Global Smart Agriculture Market Outlook 2024 Sample – by Goldstein Research

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Visibility Report Code :HC 1002

2016-2024

Global Smart Agriculture Market Outlook 2024: Global Opportunity & Growth Analysis, 2016-2024

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Table OF COnTenTs Connect With Us: Published By: Goldstein Research Copyright

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Description 1.

Executive Summary

2.

Research Methodology

3.

Regional Opportunity Analysis on the basis of Competitors

4.

Global Smart Agriculture Market Size (USD Billion) and Forecast Analysis, 2016-2024

5.

Market Dynamics: Growth Drivers, Restraints and Opportunities 5.1. Risk Factors 5.2.Regional Variations 5.3. Recent Trends and Developments

6. Global Smart Agriculture Market Segmentation 6.1. By Component Type (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.1. Adoption Rate (%) by Component Type 6.1.2. Smart Agriculture Hardware Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.2.1. Adoption Rate (%) by Smart Agriculture Hardware 6.1.2.2. Drones for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.2.3. Sensors for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.1.2.4.RFID for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.2.5. Other Components for Smart Agriculture (Transmitters, Sprinklers) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 20162024) 6.1.2.6. Market Attractiveness by Smart Agriculture Hardware 6.1.2.7. BPS Analysis by Smart Agriculture Hardware 6.1.3. Smart Agriculture Software Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.3.1. Adoption Rate (%) by Smart Agriculture Software 6.1.3.2. Data Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.3.3. Network Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.3.4. Security Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.3.5. Remote Monitoring Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.3.6. Real Time Streaming Analytics Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.3.7. Market Attractiveness by Smart Agriculture Software 6.1.3.8. BPS Analysis by Smart Agriculture Software 6.1.4. Smart Agriculture Platforms Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.4.1. Adoption Rate (%) by Smart Agriculture Platforms Copyright

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Description 6.1.4.2. Connectivity/M2M Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.4.3. Infrastructure-as-a-Service (Iaas) Backend Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.4.4. Hardware specific software Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.4.5. Consumer/Enterprise Software Extension Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.1.4.6. Market Attractiveness by Smart Agriculture Platforms 6.1.4.7. BPS Analysis by Smart Agriculture Platforms 6.1.5. Market Attractiveness by Component Type 6.1.6. BPS Analysis by Component type 6.2. By Application (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.2.1. Adoption Rate (%) by Application 6.2.2. Precision Farming (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.2.3. Aquaculture (Fish Farming) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.2.4. Precision Livestock Monitoring (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.2.5. Smart Greenhouse (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.2.6. Other Applications (Horticulture, Animal Husbandry) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.2.7. Market Attractiveness by Application 6.2.8. BPS Analysis by Application 6.3.By Region (Market Share (%) & Y-o-Y Growth Comparison, 2016-2024) 6.3.1. North America Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.1. North America Smart Agriculture Market By Country (Market Share (%) & Y-o-Y Growth Comparison, 2016-2024) 6.3.1.1.1. U.S. Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.1.2. Canada Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.1.3. Market Attractiveness by Country 6.3.1.1.4. BPS Analysis by Country 6.3.1.2. North America Smart Agriculture Market By Component Type (Market Size ($ Billion) & Y-o-Y Growth Analysis, 20162024) 6.3.1.2.1. Adoption Rate (%) by Component Type 6.3.1.2.2. North America Smart Agriculture Hardware Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.2.1. Adoption Rate (%) by Smart Agriculture Hardware 6.3.1.2.2.2. Drones for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.2.3.Sensors for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.3.1.2.2.4. RFID for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.2.5. Other Components for Smart Agriculture (Transmitters, Sprinklers) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.2.6. Market Attractiveness by Smart Agriculture Hardware 6.3.1.2.2.7. BPS Analysis by Smart Agriculture Hardware 6.3.1.2.3. North America Smart Agriculture Software Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.3.1. Adoption Rate (%) by Smart Agriculture Software 6.3.1.2.3.2. Data Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.3.3. Network Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.3.4. Security Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.3.5. Remote Monitoring Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.3.6. Real Time Streaming Analytics Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.3.7. Market Attractiveness by Smart Agriculture Software 6.3.1.2.3.8. BPS Analysis by Smart Agriculture Software 6.3.1.2.4. North America Smart Agriculture Platforms Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.4.1. Adoption Rate (%) by Smart Agriculture Platforms Copyright

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Description 6.3.1.2.4.2.Connectivity/M2M Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.4.3.Infrastructure-as-a-Service (Iaas) Backend Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.4.4. Hardware specific software Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.4.5. Consumer/Enterprise Software Extension Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.1.2.4.6. Market Attractiveness by Smart Agriculture Platforms 6.3.1.2.4.7. BPS Analysis by Smart Agriculture Platforms 6.3.1.2.5. Market Attractiveness by Component Type 6.3.1.2.6. BPS Analysis by Component type 7.3.3.1.North America Smart Agriculture By Application (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.1.1. Adoption Rate (%) by Application 7.3.3.1.2. Precision Farming (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.1.3. Aquaculture (Fish Farming) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.1.4. Precision Livestock Monitoring (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.1.5. Smart Greenhouse (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.1.6. Other Applications (Horticulture, Animal Husbandry) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 7.3.3.1.7. Market Attractiveness by Application 7.3.3.1.8. BPS Analysis by Application 6.3.2. Europe Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1. Europe Smart Agriculture Market By Country (Market Share (%) & Y-o-Y Growth Comparison, 2016-2024) 6.3.2.1.1. UK Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.2. France Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.3. Italy Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.4. Germany Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.5. Spain Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.6. Hungary Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.7. Sweden Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.8. Russia Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.9. Poland Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.10. Rest of Europe Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.1.11. Market Attractiveness by Country Copyright

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Description 6.3.2.1.12. BPS Analysis by Country 6.3.2.2. Europe Smart Agriculture Market By Component Type (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.1. Adoption Rate (%) by Component Type 6.3.2.2.2. Europe Smart Agriculture Hardware Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.2.1. Adoption Rate (%) by Smart Agriculture Hardware 6.3.2.2.2.2. Drones for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.2.3. Sensors for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.2.4. RFID for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.2.5. Other Components for Smart Agriculture (Transmitters, Sprinklers) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.2.6. Market Attractiveness by Smart Agriculture Hardware 6.3.2.2.2.7. BPS Analysis by Smart Agriculture Hardware 6.3.2.2.3. Europe Smart Agriculture Software Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.3.1. Adoption Rate (%) by Smart Agriculture Software 6.3.2.2.3.2. Data Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.3.3. Network Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.3.2.2.3.4. Security Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.3.5. Remote Monitoring Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.3.6. Real Time Streaming Analytics Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.3.7. Market Attractiveness by Smart Agriculture Software 6.3.2.2.3.8. BPS Analysis by Smart Agriculture Software 6.3.2.2.4. Europe Smart Agriculture Platforms Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.4.1. Adoption Rate (%) by Smart Agriculture Platforms 6.3.2.2.4.2. Connectivity/M2M Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.4.3. Infrastructure-as-a-Service (Iaas) Backend Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.4.4. Hardware specific software Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.4.5. Consumer/Enterprise Software Extension Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.2.2.4.6. Market Attractiveness by Smart Agriculture Platforms 6.3.2.2.4.7. BPS Analysis by Smart Agriculture Platforms 6.3.2.2.5. Market Attractiveness by Component Type 6.3.2.2.6. BPS Analysis by Component type Copyright

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Description 7.3.3.2. Europe Smart Agriculture Market By Application (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.2.1. Adoption Rate (%) by Application 7.3.3.2.2.Precision Farming (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.2.3. Aquaculture (Fish Farming) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.2.4.Precision Livestock Monitoring (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.2.5. Smart Greenhouse (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.2.6.Other Applications (Horticulture, Animal Husbandry) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 7.3.3.2.7. Market Attractiveness by Application 7.3.3.2.8.BPS Analysis by Application 6.3.3. Middle East & Africa Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.1. Middle East & Africa Smart Agriculture Market By Country (Market Share (%) & Y-o-Y Growth Comparison, 2016-2024) 6.3.3.1.1. Gulf Cooperation Council Countries (GCC) Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.1.2. South Africa Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.1.3. North Africa Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.1.4. Rest of Middle East and Africa Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.3.3.1.5. Market Attractiveness by Country 6.3.3.1.6. BPS Analysis by Country 6.3.3.2. Middle East & Africa Smart Agriculture Market By Component Type (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.1. Adoption Rate (%) by Component Type 6.3.3.2.2.Middle East & Africa Smart Agriculture Hardware Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 20162024) 6.3.3.2.2.1. Adoption Rate (%) by Smart Agriculture Hardware 6.3.3.2.2.2. Drones for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.2.3. Sensors for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.2.4. RFID for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.2.5. Other Components for Smart Agriculture (Transmitters, Sprinklers) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.2.6. Market Attractiveness by Smart Agriculture Hardware 6.3.3.2.2.7. BPS Analysis by Smart Agriculture Hardware 6.3.3.2.3.Middle East & Africa Smart Agriculture Software Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 20162024) 6.3.3.2.3.1. Adoption Rate (%) by Smart Agriculture Software 6.3.3.2.3.2. Data Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.3.3.2.3.3. Network Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.3.4. Security Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.3.5. Remote Monitoring Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.3.6. Real Time Streaming Analytics Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.3.7. Market Attractiveness by Smart Agriculture Software 6.3.3.2.3.8. BPS Analysis by Smart Agriculture Software 6.3.3.2.4. Middle East & Africa Smart Agriculture Platforms Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 20162024) 6.3.3.2.4.1. Adoption Rate (%) by Smart Agriculture Platforms 6.3.3.2.4.2. Connectivity/M2M Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.4.3. Infrastructure-as-a-Service (Iaas) Backend Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.4.4. Hardware specific software Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.4.5. Consumer/Enterprise Software Extension Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.2.4.6. Market Attractiveness by Smart Agriculture Platforms 6.3.3.2.4.7. BPS Analysis by Smart Agriculture Platforms 6.3.3.2.5. Market Attractiveness by Component Type 6.3.3.2.6. BPS Analysis by Component type Copyright

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Description 6.3.3.3. Middle East & Africa Smart Agriculture Market By Application (Market Size ($ Billion) & Y-o-Y Growth Analysis, 20162024) 6.3.3.3.1. Adoption Rate (%) by Application 6.3.3.3.2. Precision Farming (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.3.3. Aquaculture (Fish Farming) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.3.4. Precision Livestock Monitoring (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.3.5. Smart Greenhouse (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.3.6. Other Applications (Horticulture, Animal Husbandry) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.3.3.7. Market Attractiveness by Application 6.3.3.3.8. BPS Analysis by Application 6.3.4.Latin America Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.1.Latin America Smart Agriculture Market By Country (Market Share (%) & Y-o-Y Growth Comparison, 2016-2024) 6.3.4.1.1. Brazil Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.1.2. Mexico Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.1.3. Rest of Latin America Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.1.4. Market Attractiveness by Country Copyright

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Description 6.3.4.1.5. BPS Analysis by Country 6.3.4.2. Latin America Smart Agriculture Market By Component Type (Market Size ($ Billion) & Y-o-Y Growth Analysis, 20162024) 6.3.4.2.1. Adoption Rate (%) by Component Type 6.3.4.2.2.Latin America Smart Agriculture Hardware Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.2.1. Adoption Rate (%) by Smart Agriculture Hardware 6.3.4.2.2.2.Drones for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.2.3. Sensors for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.2.4. RFID for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.2.5. Other Components for Smart Agriculture (Transmitters, Sprinklers) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.2.6. Market Attractiveness by Smart Agriculture Hardware 6.3.4.2.2.7. BPS Analysis by Smart Agriculture Hardware 6.3.4.2.3. Latin America Smart Agriculture Software Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.3.1. Adoption Rate (%) by Smart Agriculture Software 6.3.4.2.3.2. Data Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.3.3. Network Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.3.4.2.3.4. Security Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.3.5. Remote Monitoring Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.3.6. Real Time Streaming Analytics Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.3.7. Market Attractiveness by Smart Agriculture Software 6.3.4.2.3.8. BPS Analysis by Smart Agriculture Software 6.3.4.2.4. Latin America Smart Agriculture Platforms Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.4.1. Adoption Rate (%) by Smart Agriculture Platforms 6.3.4.2.4.2. Connectivity/M2M Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.4.3. Infrastructure-as-a-Service (Iaas) Backend Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.4.4. Hardware specific software Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.4.5. Consumer/Enterprise Software Extension Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.2.4.6. Market Attractiveness by Smart Agriculture Platforms 6.3.4.2.4.7. BPS Analysis by Smart Agriculture Platforms 6.3.4.2.5. Market Attractiveness by Component Type 6.3.4.2.6. BPS Analysis by Component type Copyright

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Description 6.3.4.3. Latin America Smart Agriculture Market By Application (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.3.1. Adoption Rate (%) by Application 6.3.4.3.2. Precision Farming (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.3.3. Aquaculture (Fish Farming) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.3.4. Precision Livestock Monitoring (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.3.5. Smart Greenhouse (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.3.6. Other Applications (Horticulture, Animal Husbandry) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.4.3.7. Market Attractiveness by Application 6.3.4.3.8. BPS Analysis by Application 6.3.5. Asia Pacific (APAC) Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1. Asia Pacific Smart Agriculture Market By Country (Market Share (%) & Y-o-Y Growth Comparison, 2016-2024) 6.3.5.1.1. China Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1.2. Japan Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1.3. India Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1.4. Singapore Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.3.5.1.5. South Korea Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1.6. Australia Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1.7. New Zealand Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1.8. Rest of APAC Smart Agriculture Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.1.9. Market Attractiveness by Country 6.3.5.1.10.BPS Analysis by Country 6.3.5.2. Asia Pacific Smart Agriculture Market By Component Type (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.1. Adoption Rate (%) by Component Type 6.3.5.2.2. Asia Pacific Smart Agriculture Hardware Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.2.1. Adoption Rate (%) by Smart Agriculture Hardware 6.3.5.2.2.2. Drones for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.2.3. Sensors for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.2.4. RFID for Smart Agriculture (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.2.5. Other Components for Smart Agriculture (Transmitters, Sprinklers) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.2.6. Market Attractiveness by Smart Agriculture Hardware Copyright

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Description 6.3.5.2.2.7. BPS Analysis by Smart Agriculture Hardware 6.3.5.2.3. Asia Pacific Smart Agriculture Software Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.3.1. Adoption Rate (%) by Smart Agriculture Software 6.3.5.2.3.2. Data Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.3.3. Network Management Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.3.4. Security Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.3.5. Remote Monitoring Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.3.6. Real Time Streaming Analytics Software (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.3.7. Market Attractiveness by Smart Agriculture Software 6.3.5.2.3.8. BPS Analysis by Smart Agriculture Software 6.3.5.2.4. Asia Pacific Smart Agriculture Platforms Market (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.4.1. Adoption Rate (%) by Smart Agriculture Platforms 6.3.5.2.4.2. Connectivity/M2M Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.4.3. Infrastructure-as-a-Service (Iaas) Backend Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.4.4. Hardware specific software Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) Copyright

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Description 6.3.5.2.4.5. Consumer/Enterprise Software Extension Platforms (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.2.4.6. Market Attractiveness by Smart Agriculture Platforms 6.3.5.2.4.7. BPS Analysis by Smart Agriculture Platforms 6.3.5.2.5. Market Attractiveness by Component Type 6.3.5.2.6. BPS Analysis by Component type 6.3.5.3. Asia Pacific Smart Agriculture Market By Application (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.3.1. Adoption Rate (%) by Application 6.3.5.3.2. Precision Farming (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.3.3. Aquaculture (Fish Farming) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.3.4. Precision Livestock Monitoring (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.3.5. Smart Greenhouse (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.3.6. Other Applications (Horticulture, Animal Husbandry) (Market Size ($ Billion) & Y-o-Y Growth Analysis, 2016-2024) 6.3.5.3.7. Market Attractiveness by Application 6.3.5.3.8. BPS Analysis by Application 7.

Competitive Outlook

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Description 7.1. Market Share of Major Players (2016) 7.2. Company Profiles 7.2.1. AGCO Corporation 7.2.1.1. Company Synopsis 7.2.1.2. Business Strategy 7.2.1.3. Product Portfolio 7.2.1.4. SWOT Analysis 7.2.2. Deere & Company 7.2.3. Leica Geosystems 7.2.4. Trimble Navigation Ltd. 7.2.5. AgJunction Inc. 7.2.6. Cisco Systems 7.2.7. Hexagon AB 7.2.8. AG Leader Technology 7.2.9. SemiosBio Technologies Inc. Copyright

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Description 7.2.10. Topcon Positioning Systems, Inc. 7.2.11. TeeJet Technologies 7.2.12. SST Development Group, Inc. 7.2.13. Raven Industries, Inc. 7.2.14. Iteris Inc. 8.

Porter’s Five Force Model

9.

Market Landscape: Competition and Beyond

10. Market outlook for business players and entry level players to ascertain their business in dynamic ecosystem 11. Expert Analysis 12. Concluding Remarks

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1. exeCuTive summary Connect With Us: Published By: Goldstein Research Copyright

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1. Executive Summary Fig: 1-1 Global Smart Agriculture Market Size USD (Billion). 2016-2024

Fig: 1-2 Global Smart Agriculture Market Share(%), By Region-20162024

XX%

CAGR: (2016-2024)

2015e

2016f

2017f

Source: Goldstein Research

In 2016,

4.00 12.0 0%% 35.0 24.0 2016 0% 0% 25.0 0%

2018f

2019f

2020f

2021f

2022f

2023f

m a S

Hardware accounted for the highest market share XX% in Global Smart Agriculture Market

Fig: 1-3 Global Smart Agriculture Market Share(%), By Hardware-2016

e l p North America

Drones S enso rs RFI D Tags

Asia-Pacific

25.00 % Latin America

With

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27.00 % Middle East & Africa

XX% share in 2016, North America region dominated the Global Smart Agriculture Market

Fig: 1-5 Global Smart Agriculture Market Share(%), By Platform-2016

Data Management Network Management Security Remote Monitoring Real Time Streaming Analysis

C on nec tiv ity /M2M P latform s I nfrastruct ure-as-aS ervi ce (Iaas) B acken d P latfor ms H ardware specifi c so ftware P latfor ms C on sumer/Enterpris e So ftware Ex tensio n P latform s

Oth ers(Tran smi tters, S prin klers)

Source: Goldstein Research

2024

Source: Goldstein Research

Fig: 1-4 Global Smart Agriculture Market Share(%), By Software-2016

15.0010.00 % % 30.00 30.00 % % 15.00 %

Europe

5.00% 13.00 30.00 % %

Source: Goldstein Research

Source: Goldstein Research

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Key Findings  In 2016, agriculture generation services dominated the market; m health devices segment accounted for nearly XX% of the total grids are market and remaining XX% went for e-prescription. The main reason for this despaired share is due to the rising demand for connected healthcare trend owing to the ease of data management and patient monitoring.  However, as the medical device technology is on rise (especially in developing countries), the Europe connected healthcare market is projected to reach USD XXXX million in 2024 from USD XXXX million in 2016, registering a growth rate of XX%. In addition to that, North America connected healthcare market touched USD XXXX million in 2016 and rising demand for prescription medicines in the region is expected to accelerate the market to USD XXXX million by the end of 2024  As a result, if seen from the big market point of view, m health services demand is higher in homecare settings followed by other healthcare facilities. Moreover, the rising healthcare expenditure in Africa on the back of new healthcare reforms and rising investment in healthcare sector is expected to bolster the growth of connected healthcare in Africa region

e l p

Sample

 With USD XXXX million in 2016, monitoring application has the highest demand followed by diagnosis and treatment, healthcare management, education and awareness and prevention. The advancement in healthcare devices are encouraging the hospitals and diagnostic laboratories to adopt the advanced devices to obtain accurate diagnosis data. The precise data would further help the physicians to provide better treatment to the patients  Further, increasing spending by government authorities on research and development of innovative and advanced medical devices along with rising disease burden are some of the major reasons behind the spiked growth of Asia-Pacific & Africa connected healthcare market

m a S

 The advancement in connectivity technology along with the introduction of IT healthcare is also awakens the opportunity for connected healthcare devices.

Global Connected Healthcare Devices Shipments (Million Units) Asia-Pacific

2016 2024

Dearth of Management Resources

Rising food Consumption

Farm Network Business

Mass Production

North America

XX Million Units

XX Million Units

XX Million Units

XX Million Units

Innovative technologies


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2. Research Methodology Goldstein Research follows a comprehensive and rigorous research methodology to provide you accurate estimates and forecast of a particular market. We provide estimates, forecast and analysis primarily based on secondary research, primary interviews, in-house database and other free as well paid sources. Our company follows simultaneous top down and bottom approach in order to provide you the accurate market sizing. Data triangulation method is strictly followed where we triangulate the data from all the aspects, be it Function Type, application, industry verticals, material, product type or geography. In addition, the research methodology we follow is a systematic approach in order to estimate and project the market sizing keeping in mind all the on-going and upcoming trends of the market. We conduct both primary and secondary research in order to estimate a market and validate our key findings.

m a S

e l p

We put together our effort and prepare an inclusive questionnaire depending on the title of the market we are tracking and extract the important information we require to validate our findings. Our team of Analysts and experts dedicatedly put their effort to provide you the best possible and accurate data and analysis. Adding to that; technological, economic, cultural and social aspects along with the regulatory barriers are completely analysed to understand the comprehensive market scenario across different geographies. Understanding the market from both buyer and seller point of view is important to track a market and provide analysis on the same. We not only provide the market data of the four geographies as a whole, namely, North America, Europe, Asia-Pacific, Latin America, Middle East & Africa and Rest of the World (RoW) but we also provide you qualitative as well we qualitative information on country level bifurcation. We at Goldstein Research provide you: • Precise Estimates and Forecast • Authentic Analysis • In-depth Data and Analysis • Authentic Sources • Reliable Data and Analysis


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3. Major Players Presence-Regional Analysis

Major Players/ Industries

North America

APAC

Europe

AGCO Corporation Deere & Company Leica Geosystems Trimble Navigation Ltd. AgJunction Inc. Cisco Systems Hexagon AB AG Leader Technology

m a S

High Penetration

Latin America

Middle East & Africa

e l p

Medium Penetration

Low Penetration

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ROW


4. glObal smarT agriCulTure markeT analysis Connect With Us: Published By: Goldstein Research


4. Global Smart Agriculture Market Size (USD Billion) & Y-O-Y Growth Analysis (%), 2016-2024 Fig: 4-1 Global Smart Agriculture Market (USD Billion), 20162024

67.3

XX XX XX XX XX XX

56.0 46.6 38.8 32.3 26.9 22.4 15.518.6 2017

2018

2019

2020

Source: Goldstein Research

2021

2022

2023

XX% XX% XX% XX%

15.9%16.2%16.8% 15.5% 14.9% 14.2% 13.5% 13.8%14.0% XX% XX% XX% XX% XX% XX% XX% XX%2016

XX 2016

Fig: 4-2 Global Smart Agriculture Market Y-o-Y Growth (%), 2016-2024

2017

2018

2019

2020

2021

2022

2023

2024

Source: Goldstein Research

 Adoption of robotic and GPS technology with computer imaging in farming is transforming the agriculture industry by improving the agricultural production  Leading market players are investing farm business network to expand their product portfolio. Moreover, application of IoT in agriculture is giving opportunities for many startups, In last 3 years, over USD 270 million is invested by startups in agriculture and food technology deals  Due to high initial investment in the implementation of digital technologies for farming is restriction the adoption of smart farming among farmers. Over 75% of farmers are not able to adopt smart farming mainly in developing economies due to high cost hardware devices and lack accessibility to internet Copyright Goldstein Research, All Rights Reserved

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2024


4.1. Global Smart Agriculture Market Overview, By Region and Market Players2016 Fig:- 4-3 Global Smart Agriculture Market Share (%), By Country, 2016 United States Europe Japan China

m a S Brazil

Russia India

South Korea Mexico Africa

Fig:- 4-4 Global Smart Agriculture Market Share (%), By Players, 2016

e l p 6.00%

5.00%

4.00% 4.00%

4.00%

11.00% 10.00%

10.00% 10.00% 10.00% 10.00% 7.00% 5.00% 4.00%

ROW

Source: Goldstein Research

Source: Goldstein Research

AGCO Corporation Deere & Company Leica Geosystems Trimble Navigation Ltd. AgJunction Inc. Cisco Systems Hexagon AB AG Leader Technology SemiosBio Technologies Inc. Topcon Positioning Systems, Inc.

 Global connected healthcare market accounted USD XX billion in 2016 on the back of spiked demand for advanced and connected medical devices in developed economies. United States exports medical devices worth USD XX billion in 2016 across the globe  Moreover, the rising demand for portable and advanced medical equipments in healthcare facilities across the globe is one of the major reason which is bolstering the growth of global connected healthcare market  On the other hand, Asia-Pacific m-health devices market generated a revenue share of XX% in 2016 in overall connected healthcare market owing to rising adoption of self-checkup/diagnosis devices In China, XX% of the hospitals and diagnostic labs are using connected medical devices. Copyright

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5. Market Dynamics

Growth Drivers

Growth Barriers

m a S

e l p

General Trend

Highly Complex

Moderately Complex

Waived

Agricultural Practices Copyright

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5.1. Growth Drivers Advanced Technologies

Growing technological advancements in agriculture  Climatic changes directly impacts the agricultural production. In past few years U.S. and Australia region experienced in the decline in agricultural productivity due to extreme heat in the region. IoT (internet of things) -based solutions will help in weather monitoring which will eventually increase crop yield  Nearly 75% of fresh water is utilized for agricultural purpose. Growing scarcity of water is a major challenge. However, implementation of smart irrigation system can reduce the water consumption up to 10% and will help in saving water for other agricultural application

Smart Drones Digital Farming Green Housing Farming

e l p

Smart Livestock Management Smart Irrigation

 Digital farming helps in reducing the cost and minimizes the efforts related with agricultural activities. Efficient use of seeds, fertilizers and pesticides can be achieved with the help of smart agriculture. Adoption of advance technologies such as ZigBee, Bluetooth and WiFi are also helping in improving the productivity and also helps in keeping the environment safe

Deere & Company invested USD XX Million for the design & manufacturing of planting equipment with advanced & latest technology

m a S

For better services, AGCO Corporation collaborated with The Climate Corporation to improve the agriculture technology through innovation

Telematic On Field Sensors

Impact Analysis: Advanced researches and huge investments in R&D sector leads to design & manufacture of new technology devices which further expected to fuel the growth of smart agriculture market globally.  Advanced technology device help the agriculture industry to obtain precise data for operations which is further sufficient to provide better services and data. These factors expected to exhibit a positive growth in smart agriculture market in near future.

Adaptation of New technologies in many nations like China, adapted new technology/services designed by Smart Agriculture Analytics to provide better solutions High

Medium

Low

Impact on Connected Healthcare Market

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5.2. Market Restraints Fig: 5-1 Rural population (%) of the total population(%)- By Countries, 2016

High initial investments, fragmentation in agriculture and lack of internet connectivity  High cost of IoT based solutions for farming is a major concern for farmers majorly in developing countries such as China, India and Brazil. Huge initial investment in digital farming technology is a key factor which is hindering the growth of global smart agriculture market

e l p

 Agriculture sector is majorly dominated by small enterprises, lack of involvement of dominating players of IoT based solution in agriculture is impacting the expansion of smart agriculture business. Agriculture sector generates huge amount of data and data management is a major obstacle for smart agriculture

XX

m a S

China Russia

 As agriculture needs wide connectivity, adoption of LPWA technologies is expected to decline due to its high-cost and narrow-area connectivity that can not cover the remote locations

48% 48%

• 12.7% of the total population of the world population is lived at or below USD 1.90 per day in the year 2012 • In China, 753 Million people living at or below USD1.90 per day • In East-Asia region, 18.7% of the total population of this region living below poverty line in 2012

52% 52%

XX India South Africa

Impact Analysis: The population living in rural areas across the globe are unable to get internet connectivity due to less awareness are some of the factors which is restraining the growth of smart agriculture market.  Many regions across the globe are underdeveloped and viewing low economies . These regions are unable to embrace advanced agriculture facilities which is curbing the growth of global smart agriculture market.

• In United States, the population lies below poverty line is 15.2% of the total population of the country

Source: XXXX

Medium

Low

Impact on Smart Agriculture Market All Rights Reserved, Goldstein Research

Germany

Source: World Bank Data

High

Copyright

XX

XX

 Many famers are not able to adopt IoT based technology for farming due to lack of accessibility of connectivity services. Also lack of knowledge about wireless technology mainly in emerging economies is also hindering the growth of smart agriculture business

Rural & Urban Population (%)- World

XX

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5.3. Opportunities for Smart Agriculture Market Fig: 5-2 Future Scope for IoT Application in Smart Agriculture

Source: Goldstein Research

Fig: 5-3 Opportunities for Smart Agriculture

Source: Goldstein Research

 CLASS a leading agricultural machinery manufacturer collaborated with 365FarmNet , to facilitate the farmers with remote services which they can manage via Smartphone or computer  CleanGrow Ltd. launced Carbon Nanotube Probe which helps in measuring ion concentration in liquid and nutrient planning for field  Hexagon AB, acquired iLab Sistemas in 2014, to provide optimization solutions for agriculture sector, primarily for sugarcane and ethanol industries Copyright Goldstein Research, All Rights Reserved

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5.4.1. Impact Analysis (%) of Connectivity Technologies on Global Smart Agriculture Market Key Factors Wi-Fi technology dominated the global Connected Healthcare market in 2016 and this technology is anticipated to impact majorly on the Smart Agriculture market in near future

e l p

 Drivers of Wi-Fi Technology

m a S Source: Goldstein Research Copyright

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 Provides secure connection with software defined networking by scanning and securing the devices at network entry point  Moreover, GNSS/Location technology is also one of the technology which hugely impacts the market of Smart Agriculture by rising the adoption rate of smart devices.  Cellular technology is expected to impact the global smart agriculture market by XX% by the end of the forecast period i.e. 2016-2024. The increasing number of cellular connections along with smart phone users across the globe are the two major factors which creates the agriculture ecosystem Most of the agriculture facilities are connected through the personal wi-fi for the better operation of various departments simultaneously in order to carry out the variety of operations www.goldsteinresearch.com


5.4.2. Impact Analysis (%) of Communication Technology on Global Smart Agriculture Market, 2016-2024 Fig: 5-4 Communication Technologies Used in Smart Agriculture

NB-IoT WIFI

18%

7.00% 10.00% 8.00%

41%

LPWA (LORA, Sigfox) ZigBee Bluetooth Satellite

Fig: 5-5 Smart Agriculture Market, Adoption Rate(%), By Communication Technology, 2016

22.00%

45% 48%

18.00%

72%

Bluetooth Satellite 2G/3G/4G

35.00%

61%

LWPA

ZigBee Others

2G/3G/4G

Source: Goldstein Research

89%

Source: Goldstein Research

 Growing penetration of communication technology is positively impacting the business opportunities for smart agriculture. These communication technology is used in application such as automated irrigation, water sprinkling, farm navigation and greenhouse farming  Over 82% of U.S. farmers are using GPS technology for monitoring farm machinery and navigation. Rising penetration of communication technology is helping in improving the precision livestock monitoring and farm management which is likely to boost the demand of precision farming during the forecast period  As agriculture needs wide connectivity, adoption of LPWA technologies is expected to rise due to its low-cost and wide-area connectivity that can cover the remote locations to reach. Copyright Goldstein Research, All Rights Reserved

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6.1. Global Smart Agriculture Market Share (%), By Component, 2016-2024 Fig: 6-1 Global Smart Agriculture Market Share (%) Analysis, By Component, 2016-2024

20.00%

12.00% Hardware

24.00%

Software

2016

2024 64.00%

Platforms

51.00%

29.00%

Source: Goldstein Research

 Rising demand of drones for remote monitoring of field and livestock and help in improving crop management. However, less adoption of RFID tags and transmitters are likely to impact the market demand of hardware segment  In 2010, Food and Agriculture Organization introduced Climate Agriculture Policies for food security and mitigation in U.S.. This has significantly increased the adoption of connectivity and hardware specific software based platforms for agricultural purpose  Rising adoption of data management and remote monitoring software for capacity development, field monitoring and analysis of climatic changes is boosting the growth of smart agriculture software market Copyright Goldstein Research, All Rights Reserved

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6.2. Global Smart Agriculture Market (USD Billion) & Y-O-Y Growth Analysis (%), By Components-2016-2024 Fig: 6-2 Global Smart Agriculture Market (USD Billion), By Component, 2016-2024

Fig: 6-3 Global Smart Agriculture Market Y-o-Y Growth (%), By Component, 2016-2024 XX

XX

XX% XX%

20.8% 19.6% 18.7% 17.8% 17.4% 16.8% 15.6% 13.9% 12.5%

XX

XX

XX% XX%

XX XX

XX%

XX

XX%

XX

XX

XX%

XX XX

XX

XX

XX%

XX

XX% XX%

XX

XX

2016

2017

2018

2019

2020

Source: Goldstein Research

2021

2022

2023

2024

XX% 2016 XX%

2017

2018

2019

2020

2021

2022

2023

Source: Goldstein Research

 Implementation of big data analytics, cloud based services and internet of things in agriculture is impelling the growth of smart agriculture market. Strategic IoT based solutions offered by leading players is likely to increase the demand of smart agriculture in the near future Rising penetration of internet is increasing the deployment of IoT based solutions in agriculture sector. In U.S. more than 50% of farmers are using satellite navigation to analyze topographic data and more than 60% of farmers are using 3G or 4G enabled mobile applications for farm and crop management  Automated irrigation and water management task is mainly completed with the help of sensors, thus increasing the demand of sensors in smart agriculture Copyright Goldstein Research, All Rights Reserved

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2024


6.2.1. Global Smart Agriculture Market Size (USD Billion) & Y-O-Y Growth Analysis (%), By Hardware, 2016-2024 Fig: 6-4 Global Smart Agriculture Market (USD Billion), 20162024 XX XX XX XX XX XX XX

849.7 713.2 608.7 525.1 455.8 397.2 347.5 307.1 274.5

Fig: 6-5 Global Smart Agriculture Market Y-o-Y Growth (%), 2016-2024 XX% XX%

20.4% 18.1% 14.8%15.6%16.2% 13.7% 12.8% 10.9%11.5% XX% XX% XX% XX% XX% XX% XX%

XX

XX%

XX

XX% 2016 XX%

XX 2016

2017

2018

2019

2020

2021

2022

2023

2017

2018

2019

2020

2021

2022

2023

2024

Source: Goldstein Research

Source: Goldstein Research

Fig: 6-6 Global Smart Agriculture Market Share (%), By Hardware-2016

9.00% 6.00% 10.00%

Drones Sensors RFID Tags

75.00%

Others

 Smooth exploration over farm fields and providing precise information on real time basis are major advantages of drones which is driving the demand for drones among farmers  Rising demand for soil monitoring and livestock tracking is likely to propel the demand for radio Frequency Identification (RFID) tags and sensors  Battery less sensors is a new category for smart sensors which is used for collecting agricultural data based on ultra-low-power sensor with RFID technology

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2024


6.2.2. Global Smart Agriculture Market Segmentation, By Hardware Application2016-2024

Value Chain Fig: 6-7 Number of Drones Used for Smart Agriculture (In Units), 2016-2024 XX

XX

XX XX

XX

XX

XX XX XX

XX XX XX

XX XX

XX

XX

2017

2018

XX 2016

2019

2020

2021

2022

2023

 In 2015, Yamaha sold nearly 300 droves in Japan and the company believes that drones have potential future in smart agriculture market and the sales units is projected to reach over 500 by the end of 2050  In 2015, Federation Aviation Administration granted the approval for flying drones in the U.S. As per Association for Unmanned Vehicle Systems International, commercial drones are expected to bring over 100,000 jobs in coming 10 years which will add over USD 13 billion in U.S. economy

XX

XX

Key Insights

2024

 Demand of RFID tags and drones are also increasing in European countries such as Italy, Germany, The U.K. and France. In 2016, over 100,000 drones used for agriculture sector accounted fin Europe. Moreover, European Union invested around USD 100 billion for research & development of technological solutions for agriculture sector

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6.3. Global Smart Agriculture Market, BPS Analysis and Market Attractiveness, By Component, 2016-2024 Fig: 6-7 Global Smart Agriculture Market Attractiveness-By Component, 2016-2024

Fig: 6-8 Global Smart Agriculture Market BPS Analysis- By Component, 2016-2024 XX%

XX

9% 8%

11% 13%

83%

76%

XX% XX

XX% XX%

XX

XX% XX%

XX

XX% XX%

XX

XX% XX

XX

XX% XX%

XX

XX

XX

XX

Hardware

XX XX Market Size (USD Billion)

Platforms

XX

XX

2015

XX Software

Software

2024

Platforms

Hardwares

Source: Goldstein Research

Source: Goldstein Research Key Points

ď ą Hardware segment is the major revenue generated segment among the smart agriculture components. The rapid adoption of smart devices for field monitoring and farm management further makes this market most attractive for the leading market player followed by the software segment of smart agriculture component ď ą According to BPS analysis graph, smart agriculture platform and smart agriculture software market are expected to rise by XX BPS & XX BPS respectively. Increasing demand for sensors and cloud based platforms for livestock monitoring, water management and data management further creates huge opportunities for the market players to increase the demand for smart agriculture components Copyright Goldstein Research, All Rights Reserved

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6.4. Global Smart Agriculture Market, By Application 2016-2024 Fig: 6-9 Global Smart Agriculture Market (USD Billion), By Application, 2016-2024 2016

2024

Others

XX XX

Fig: 6-10 Key Challenges for Adoption of Communication Technology in Smart Agriculture, Market Share (%), 2016

XX

High Bandwidth

XX%

XX%

XX XX

XX

XX

XX

Delay in Data Transfer

XX%

XX XX

Extended Deployment Time

XX XX

P

on isi rec

g in rm Fa P

on isi rec

c to es Liv

k ld Yie

M

g rin ito n o

XX

XX

XX

XX

XX

g e e n tem us rin on tio Sys Dr ito iga Ho l r t n r a n n I r o e t ee tu ar em Gr il M ul ag Sm rt So ric n a g a A Sm M rm Fa

Source: Goldstein Research

XX

rs he Ot

Network Coverage Issue

XX%

XX%

High Initial Cost

XX% XX% XX% XX% XX% XX% XX% XX% XX% XX%

Source: Goldstein Research

 Climate change is the major challenge which creates challenges for farmers and it directly impacts on the agricultural production. U.S. experienced 18% decline in the production of soy and corn due to climatic changes. Adoption of smart technologies is helping in monitoring the climate change and stores the data which helps in managing the resources and increases the production Implementation of precision farming is an emerging trend which is based on IoT and information and communication (ICT) technologies. Precision farming is an eco-friendly approach which ensures the profitability and sustainability of crop production  Over 65% of farmers are positive that precision farming will be the most influential trend which will impact the farming practices Copyright Goldstein Research, All Rights Reserved

XX%

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6.5. Global Smart Agriculture Market, By Region, 2016-2024 Fig: 6-11 Global Smart Agriculture Market (%), By Region, 2016

6.00%

Fig: 6-12 Global Smart Agriculture Market (%), By Region, 2024

7.00%

20.00%

22.00% 50.00%

24.00% North America Asia Pacific

43.00%

28.00% Europe Latin America & MEA

Source: Goldstein Research

North America Asia Pacific

Europe Latin America & MEA

Source: Goldstein Research

 North America region is adopting Climate-smart agriculture (CSA) which will ensure the security of climatic changes and contributes in increasing the agricultural production and reduces the greenhouse emission  Asia-Pacific is the fastest growing region for global smart agriculture market, owing to the increasing penetration of precision farming in countries such as Japan, China and India. Moreover , Growing demand of automation in agriculture industry in Latin America region is expected to boost the growth of Smart Agriculture in the region  Adoption of precision farming has brought tremendous changes in European Agriculture. European Union has invested over USD 30 million for application of digital farming and implementation of advance technology for farming in the region Copyright Goldstein Research, All Rights Reserved

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7. nOrTh ameriCa smarT agriCulTure markeT Connect With Us: Published By: Goldstein Research Copyright

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7. North America Smart Agriculture Market , 2016-2024 Fig: 7-1 North America Smart Agriculture Market (USD Billion), 2016-2024

XX

XX

XX

XX

557.0 466.3 397.0 341.5 295.5 256.8 223.9 197.2 175.7

Fig: 7-2 North America Smart Agriculture Market Y-o-Y Growth (%), 2016-2024 XX% XX%

19.4% 17.5% XX% 14.7%15.1%15.5%16.3% 13.6% XX% 12.2% 11.2% XX% XX% XX%

XX% XX%

XX

XX%

XX

XX% XX%2016 2016

2017

2018

2019

2020

2021

2022

2023

Source: Goldstein Research

2018

2019

2020

2021

2022

2023

2024

Source: Goldstein Research

Fig: 7-3 North America Smart Agriculture Market (%), By Component, 2016

19.05%

27.62%

2017

2024

Hardware

53.33%

Source: Goldstein Research Copyright Goldstein Research, All Rights Reserved

Fig: 7-4 North America Smart Agriculture Market (%), By Country, 2016

24.05%

US

Software Platform

75.95% Source: Goldstein Research www.goldsteinresearch.com

Canada


7.1. U.S. Smart Agriculture Market , 2016-2024 Fig: 7-6 U.S. Smart Agriculture Market Y-o-Y Growth (%), 20162024

Fig: 7-5 U.S. Smart Agriculture Market (USD Billion), 2016-2024 XX

XX%

443.4

XX

XX

XX

XX

XX% XX%

17.8%18.9% 16.9% XX% 14.8%15.9%16.2% 13.9% XX% 12.7% 11.6%

369.5 313.1 268.0 230.8 199.6 173.2 151.8 134.6

XX%

XX% XX% XX% XX%

XX% 2016 XX%

XX 2016

2017

2018

2019

2020

Source: Goldstein Research

2021

2022

2023

2017

2018

2019

2020

2021

2022

2023

2024

Source: Goldstein Research

 U.S. government provides nearly USD 30 billion as an agricultural subsidies to farmers for the production of corn, cotton, rice, soybeans, wheat, and other crops. Government is also making investment in improving business programs for farmers in rural areas. This is raising the adoption of smart technologies to improve agricultural production and eventually boosting the growth for smart agriculture market in the region  Over 80% of U.S. farmers are using drones for agricultural operations. Mainly infrared cameras and sensors are embedded in drones which helps the farmers in monitoring field and crop  Adoption of big data analytics is positively impacting the smart farming business which is influencing the entire food supply chain Copyright Goldstein Research, All Rights Reserved

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2024


7.2. North America Smart Agriculture Market, BPS Analysis and Market Attractiveness, By Component, 2016-2024 Fig: 7-7 North America Smart Agriculture Market Attractiveness-By Type, 2016-2024

Fig: 7-8 North America Smart Agriculture Market BPS Analysis- By Type, 2016-2024 XX%

XX%

XX% XX%

XX% XX%

XX%

12% 20%

13% 15%

68%

72%

2016

2024

XX% XX%

XX%

XX% XX%

XX% XX%

XX%

XX% XX%

XX

XX

XX

XX

Hardware

XX XX XX Market Size (USD Billion)

Software

Source: Goldstein Research

Platforms

XX

XX

XX

XX%

Platforms

Software

Hardware

Source: Goldstein Research

 Continuous advancement in technologies, reduction in price of agricultural devices and huge implementation of global positioning system (GPS) devices, sensor monitoring systems, and smart detection systems for agricultural operations is bolstering the demand of hardware segment of smart agriculture market  According to BPS analysis graph, North America smart agriculture platform and North America smart agriculture software market are expected to rise by XX BPS & XX BPS respectively. Increasing adoption of network management software and machine to machine connectivity platform for remote monitoring of farm machinery and farm management is boosting the growth of platforms and software segment in North America region Copyright Goldstein Research, All Rights Reserved

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8. pOrTer’s Five FOrCe mOdel Connect With Us: Published By: Goldstein Research


8. Porter’s Five Force Model

Customer can easily switch to substitute products. So substitutes are a threat to your company. When there are actual and potential substitute products available then segment is unattractive. Profits and prices are effected by substitutes so, there is need to closely monitor price trends. In substitute industries, if competition rises or technology modernizes then prices and profits decline.

Intensity of competition among the existing competitors in the market. Intensity of rivalry depends on the number of competitors and their capabilities. Industry rivalry is high when: •There are number of small or equal competitors and less when there’s a clear market leader. •Customers have low switching costs •Industry is growing •Exit barriers are high and rivals stay and compete •Fixed cost are high resulting huge production and reduction in prices Copyright

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e l p

Threat of new entrants

m a S Bargaining power of suppliers

The Barriers to Entry are significantly high which means that it is difficult for outside companies to enter the industry. New entrant is require to offer the innovative and distinguish service or product in order to make place in the competitive space, only such a player tends to establish its market presence and obtain the necessary clearance from regulatory agencies and obtain the profit.

Bargaining Power of buyers

Threat of substitute products or services

The power of Buyers is significantly low and they are not able to negotiate for better pricing. However on the supplier side, the power of suppliers is also high as there are multiple supplier for a particular test and these causes, for companies to compete on price when they do not have any point of differentiation.

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9. AGCO Corporation (Company Overview)

Founded 1990

Employees 19,795

Key Products

Company Overview    

Website www.agcocorp.com

Headquarters U.S.

AGCO Corporation is an American multinational agricultural equipment manufacturer headquartered in, Georgia The Company operates through three geographic segments: Americas; Europe, the Middle East and Africa (EMEA), and Asia Pacific (APAC). AGCO Corporation is traded on NYSE stock exchange, America The company providing from hybrid combine harvesters to telemetry-based tracking systems and it is one of the leading agricultural equipment manufacturer company across the globe. AGCO has recently introduced “Fuse” connected services to help farmers to increase their farm efficiency through preventive maintenance and machine condition monitoring services.

Tractors Replacement Parts Grain Handling, Seed Processing and Protein Production Equipments Combines Application Equipments Other Equipments

Business Strategy

Acquisition and Expansion of Product Portfolio: The company is focusing towards the expansion of its product portfolio by acquiring technology companies such as Precision Planting, Cimbria, Tecno Poultry Equipment, Farmer Automatic, Intersystems International, Ag-Chem Equipment and many more. Prior acquisitions have resulted in a wide range of outcomes, from successful introduction of new products and technologies. AGCO has been working to provide the right products and the right technology to compete effectively in dynamic marketplace. The company is investing in new products, new technology, and improved distribution in order to expand margins and produce higher returns on invested capital.

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9.1. AGCO Corporation(Revenue & Financial Analysis) Fig: 9-1 AGCO Corp. - Revenue (USD Billion), 2014-2016

Key Takeaways

Revenue (USD Billion)

XX

XX

2014

2015

XX

Total revenue Of AGCO Corp. decreased by USD XX Million in FY 2016 and EMEA revenue decreased by USD XX Million.

Revenue in Asia-Pacific segment increased USD XX Million in FY 2016, due to product revenue growth in China.

The company achieved high revenue growth of XX% from North America, XX% from Brazil and X% from Mexico.

AGCO Corp. Invested more than USD XX million in strategic acquisitions and R&D activities.

2016

Source: Annual Report

Key Financials

2015

2016

Operating Margin

XX%

XX%

Net Profit Margin

XX%

XX%

XX

XX

USD XX Billion

USD XX Billion

Debt to Asset Market Capitalization

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9.2. AGCO Corporation ( Revenue Split & Recent News) Fig: 9-2 AGCO Corporation- Revenue (%)-By Business Segment, 2016

Fig: 9-3 AGCO Corporation.-Revenue (%)-By Geography, 2016

Tractors

XX% XX%

XX%

XX%

Replacement Parts

XX%

XX%

XX%

XX%

North America

XX%

Seed processing and Protein Production Equipment

EMEA

Combines

Asia-Pacific

Application equipments

XX%

South America

Other Machinery

Source: Annual Report

Source: Annual Report

Recent News & Developments 

March, 2017: AGCO corporation announced that it has reached agreement in principle to acquire the forage division of Lely Group. Lely’s forage division is a leading manufacturer of balers and loader wagons in Europe.

September, 2016: AGCO Corporation, acquired Cimbria in Denmark, world’s leading company within industrial processing, handling and storage of grain and seeds.

April, 2015:.AGCO Corporation, acquired Farmer Automatic in 2015 , a leading manufacturer of poultry solutions for layers, pullets and broilers and is headquartered in Laer, Germany.

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10. Expert Analysis

Expert Analysis  In 2016, diagnostic laboratories dominated the market; nursing homes/clinics and hospitals segment accounted for nearly XX% of the total Asia-Pacific & Africa point of care testing (POCT) devices market and remaining XX% went for different end-use segments such as homecare settings. The main reason for this despaired share is due to the rising demand for point of care testing devices in diagnostic laboratories on the back of their advantages such as faster and precise results

e l p

 However, as the medical device technology is on rise (especially in developing countries), the Africa therapeutic market is projected to reach USD XXXX million in 2023 from USD XXXX million in 2016, registering a growth rate of XX%. In addition to that, Africa pharmaceutical market touched USD XXXX million in 2016 and rising demand for prescription medicines in the region is expected to accelerate the market to USD XXXX million by the end of 2023

m a S

 As a result, if seen from the big market point of view, blood glucose monitoring devices demand is higher in homecare settings followed by diagnostic laboratories. Moreover, the rising healthcare expenditure in Africa on the back of new healthcare reforms and rising investment in healthcare sector is expected to bolster the growth of point of care testing devices in Africa & Asia-Pacific region  With USD XXXX million in 2016, blood glucose monitoring devices has the highest demand followed by glycated hemoglobin (HbA1c) testing devices and blood collection devices. The advancement in diagnostic devices are encouraging the hospitals and diagnostic laboratories to adopt the advanced devices to obtain accurate diagnosis data. The precise data would further help the physicians to provide better treatment to the patients  Further, increasing spending by government authorities on research and development of innovative and advanced medical devices along with rising disease burden are some of the major reasons behind the spiked growth of Asia-Pacific & Africa point of care testing (POCT) devices market  Further, increasing spending by government authorities on research and development of innovative and advanced medical devices along with rising disease burden are some of the major reasons behind the spiked growth of Asia-Pacific & Africa connected healthcare market Copyright

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About Us Based in U.S., Goldstein Research is a young business consulting and market research firm with vast reach across America, Asia and parts of Europe and the Middle East. In the next five years, we strive to expand our reach to 50+ nations spanning across Europe, Asia and parts of the Middle East and Africa. We strive to realize a strong brand presence globally through our quality research and forecasting solutions. With 30+ domain experts and 50+ employees working day and night to crunch numbers and bring out the best and detailed market reports and forecasts, we strive to enable you to foresee upcoming market challenges and develop a robust business model and strategies, which would add to your profitability and market visibility as a brand. Our mission is simple: to develop insightful business solutions, help our clients make powerful future decisions to keep them well ahead of the game which is the market, and leave a mark across businesses and communities through our well-defined ideas and clear cut forecasts. Our mission is simple: to develop insightful business solutions, help our clients make powerful future decisions to keep them well ahead of the game which is the market, and leave a mark across businesses and communities through our well-defined ideas and clear cut forecasts.

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