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Global Warehouse Robotics Market (2015 – 2020)
By Type (Fixed: Conveyors, Gantry, Others. Mobile: AGV, Palletizers, Others); Functions (Storage, Sortation, Packaging, Others); Industry (Automotive, Electronics and Electricals, Food & Beverages, Pharmaceutical, Others)
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TABLE OF CONTENTS 1. Global Warehouse Robotics– Market Overview 2. Executive Summary 3. Global Warehouse Robotics– Market Landscape 3.1. Market Share Analysis 3.2. Comparative Analysis 3.2.1.
Product Benchmarking
3.2.2.
End user profiling
3.2.3.
Top 5 Financials Analysis
4. Global Warehouse Robotics– Market Forces 4.1. Market Drivers 4.2. Market Constraints 4.3. Market Challenges 4.4. Attractiveness of the Warehouse Robotic Industry 4.4.1.
Power of Suppliers
4.4.2.
Power of Customers
4.4.3.
Threat of New entrants
4.4.4.
Threat of Substitution
4.4.5.
Degree of Competition
5. Global Warehouse Robotics Market– Strategic Analysis 5.1. Value Chain Analysis 5.2. Pricing Analysis 5.3. Opportunities Analysis 5.4. Product/Market Life Cycle Analysis
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5.5. Suppliers and Distributors 6. Global Warehouse Robotics Market – By Type 6.1. Fixed Robot 6.1.1.
Gantry
6.1.2.
Robotic Arms
6.1.3.
Picking Carousels
6.1.4.
Labelers
6.1.5.
Conveyors
6.1.6.
Others
6.2. Mobile Robot 6.2.1.
Automatic Guided Vehicles (AGV)
6.2.2.
Robotic Forklifts
6.2.3.
Palletizers
6.2.4.
Others
7. Global Warehouse Robotics Market – By Function 7.1.Storage 7.1.1.
Vertical Storage
7.1.2.
Horizontal Storage
7.2. Sorting 7.3. Assembling and Disassembling 7.4. Trans-shipment 7.5. Distribution 7.6. Replenishment
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7.7. Packaging 7.8. Labeling 7.9. Inspection 7.10.
Consolidation
7.11.
Others
8. Global Warehouse Robotics Market – By Industry 8.1. Food and Beverage 8.2. Automotive 8.3. Paper and Print 8.4. Medical 8.5. Defense 8.6. Pharmaceutical 8.7. Airport 8.8. Textile 8.9. Chemical 8.10. Ports 8.11. Automated Retail 8.12. Electrical and Electronics 8.13. Mining 8.14. Construction 8.15. Plastic & Rubber 8.16.
Oil and Gas
8.17.
Agriculture
9. Global Warehouse Robotics Market -Geographic Analysis
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9.1. Introduction 9.2. North Americas 9.2.1.
U.S.
9.2.2.
Canada
9.2.3.
Others
9.3. South America 9.3.1.
Brazil
9.3.2.
Argentina
9.3.3.
Others
9.4. Europe 9.4.1.
UK
9.4.2.
France
9.4.3.
Germany
9.4.4.
Others
9.5. APAC 9.5.1.
China
9.5.2.
South Korea
9.5.3.
India
9.5.4.
Japan
9.5.5.
Australia
9.5.6.
Others
9.6. ROW 10. Market Entropy
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10.1.
New Product Launches
10.2.
M&As, Collaborations, JVs and Partnerships
11. Company Profiles 11.1.
ABB Ltd.
11.2.
Eaton Corporation Public Ltd.
11.3.
Siemens AG
11.4.
Kuka AG
11.5.
Fanuc Corp.
11.6.
Evana Automation (Evana Tool & Engineering, Inc.)
11.7.
ATS Automation Tooling System Inc.
11.8.
Doerfer Companies
11.9.
Adept Technology, Inc.
11.10. Gudel Pvt. Ltd. 11.11. Apex Automation and Robotics Pty. Ltd. 11.12. Axium Inc. 11.13. Kawasaki Robotics Inc. 11.14. Nachi Fujikoshi Corp. 11.15. Pari Robotics, Inc 11.16. Reis Robotics GmbH & Co. KG 11.17. Rockwell Automtion Inc. 11.18. Schunk GmbH 11.19. Toshiba Machine Co., Ltd. 11.20. Yamaha Robotics 11.21. Kiva Systems, Inc.
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11.22. Swisslog Holding AG (Kuka AG) 11.23. Egemin Automation, Inc. 12. Appendix 12.1.
Abbreviations
12.2.
Sources
12.3.
Research Methodology
12.4.
Bibliography
12.5.
Disclaimer
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1. GLOBAL WAREHOUSE ROBOTICS – MARKET OVERVIEW 1.1. SCOPE Warehouse Robotics has found to be one of the major part of the warehouse management or warehousing. Warehousing Robotics is used by manufacturers, suppliers, retailers, transport business etc. The scope behind automation in warehouse is to reduce labor intensive process, cost reduction, accuracy, increase speed etc. More companies are looking forward to integrate automation in the warehousing to lower supply chain cost, streamline processes and improve shipping operations. Most of the warehouse robots include fixed and mobile robot types which have been analyzed in detail in the report. Few most common robots found in warehouse are palletizers, Automatic Guided Vehicles (AGV), Robotic Arms, and Conveyors etc. AGV and Conveyors have been most frequently used robots in warehouse automation and are seen to have impressive growth since 2012. Manufacturing industry are driven by labor intensive works, where high skilled labor is necessary but after introducing automation in warehouse industry have experienced a good cost reduction in the operations. Warehouse Robotics market has been analyzed by types of robots like AGV, Robotic Forklifts, Conveyors, etc. I the report the Warehouse Robotic market is also segmented by Functions, Industry and Geography. Functions include Storage, Sorting, Trans-shipment, Distribution etc. Major Industries where the warehouse robotics can be seen are Manufacturing, Automotive, Electronics and Electricals, Retail, Food and Beverages etc. Major players in manufacturing these warehouse robots are profiled with company overview, financial overview, business strategies, product portfolios, recent developments and market shares of the key players. Some prominent players are ABB Ltd. (U.S.), Fanuc Corp (Japan), ATS Automation Tooling System Inc. (Canada), Gudel Pvt. Ltd. (Europe), Nachi Fujikoshi Corp. (Japan), Pari Robotics, Inc (India) etc. The report contains detailed and in-depth analysis of the segmentation of the Global Warehouse Robotics market.
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1.2. STAKEHOLDERS
The following are the key stakeholders in the Warehouse Robotics market.
Metal Industry Plastic and Rubber Manufacturers Mechanical parts manufacturers Battery Manufacturers Electronics and Electrical Parts Manufacturers Vehicle Manufacturers Automation Service providers Distributors Component suppliers
Government Regulation boards
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2. EXECUTIVE SUMMARY Robotics is a combination of different engineering skills for the application of robots. Robots are the artificial agent which obey human orders, protect its existence without harming the environment. They operate using devices as sensors, controllers, cameras, software modules, and locomotors. Robotics can be classified into industrial robotics and service robotics. Warehouse Robots are the one used for activities such as palletizing, replenishment, assembling, disassembling, consolidation, sortation, packaging, labeling, inspection, storage etc. The warehouse robotics is segmented on the basis of type, function, industry with geography. Robotic arms, Gantry robots, Picking Carousels, Labelers, Conveyors, Automatic Guided Vehicle (AGV), Robotic Forklifts, and Palletizers are some robots used for warehousing activities. In wide range of industries such as Food and Beverage, Automotive, Paper and Print, Medical, Defense, Pharmaceutical, Textile, Chemical, Ports, Automated Retail, Electrical and Electronics, Mining, Construction, Plastic and Rubber, Oil and Gas, Agriculture and at Airport is the application of these robots are found. Sales of such robot are estimated to grow at 11.3% CAGR. In last 10 decades Warehouse Robotics has found to be growing and expanding their Function in different Industries. While we talk about Warehouse Robotics Function in regions like U.S., China, Japan, India, Europe etc., are countries upgrading the technology, sophisticated automation and giving rise to the robotic Functions in industry such as Warehouse Robotics. Key drivers of warehouse robotics market will include reduced space utilization, reduced labor turnover, improved product quality, improved production output, reduced operating costs, and improved product flexibility.
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SAMPLE FIGURE: GLOBAL WAREHOUSE ROBOTICS MARKET – BY GEOGRAPHIC REGION (%), 2014
North America South America Europe APAC RoW
Source: IndustryARC Analysis, Expert Interviews
The above figure illustrates the current market revenue share by geographic regions for the Warehouse Robotics market. As shown, North America, South America, Europe and APAC has multiple players due to increasing Manufacturing Industries in APAC, Automotive in Europe, etc. has led in demand for warehouse automation and thereby increasing demand for Warehouse Robotics Market.
SAMPLE TABLE: GLOBAL WAREHOUSE ROBOTICS MARKET REVENUE, BY INDUSTRY ($BN), 2014-2020 Industry
2014
2015
2016
Automotive xx xx xx Manufacturing xx xx xx Food and Beverage xx xx xx Textile xx xx xx Automated Retail xx xx xx Electronics and xx xx xx Electrical Plastic and Rubber xx xx xx Others xx xx xx Total xx xx xx Source: IndustryARC Analysis, Expert Interviews
2017
2018
2019
2020
xx xx xx xx xx xx
xx xx xx xx xx xx
xx xx xx xx xx xx
xx xx xx xx xx xx
CAGR %(20152020) xx xx xx xx xx xx
xx xx xx
xx xx xx
xx xx xx
xx xx xx
xx xx xx
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Robotic Automation in the Industry has observed a strong growth in last decade, with 179,000Industrial Robots Shipped and Installed in 2013, this accounts to the growth by 12% compared to previous year. Growth of Industrial Robotics will see a linear growth by 2020 and is expected to grow at a CAGR 11.3%, this growth will have a impressive impact on warehouse robotics market by 2020. Competitive landscape for each of the product types is highlighted and market players are profiled with attributes of company overview, financial overview, business strategies, product portfolio and recent developments. Market shares of the key players for 2012 are provided. The prominent players profiled in this report are ABB Ltd. (U.S.), Fanuc Corp (Japan), ATS Automation Tooling System Inc. (Canada), Gudel Pvt. Ltd. (Europe), Nachi Fujikoshi Corp. (Japan), Pari Robotics, Inc (India) etc. Warehouse Robots are designed and produced taking in consideration of standards/ Rules framed by Occupational Safety and Health Administration and ISO Standards under Industrial Robotics
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KEY MARKET INSIGHTS • • • •
•
While warehouse automation becoming more adept and cost effective in operations, warehouse robotics has more role to play in many industries by 2020. The estimated CAGR of Warehouse Robotics by 2020 is 11.3% U.S., China, India, Japan, France and others are the largest and highest growing markets for the Global Warehouse Robotics market. Companies are more concerned about the increasing the processing speeds, reducing variable cost, targeting for accuracy etc. Warehouse Automation being one of the key influencing factors, it has successfully attracted investors. The service robot sector is expected to grow at a rate of 25% to 30% for the next two or three years.
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12.3. RESEARCH METHODOLOGY The quantitative and qualitative data collected for the Global Warehouse Robotics report is from a combination of secondary and primary sources. Research interviews were conducted with senior executives and/or managers of leading Warehouse Robots manufacturers. These Key Opinion Leaders (KOLs) were then provided a questionnaire to gather quantitative and qualitative inputs on their operations, performance, strategies and views on the overall market, including key developments and technology trends. Data from interviews is consolidated, checked for consistency and accuracy, and the final market numbers are again validated by experts. The global market was split by Types, Functions and Geography based on different factors like primary and secondary sources, understanding of the number of companies operating in each segment and also KOL insights. We have used various secondary sources such as directories, articles, white papers, newsletters, annual reports and paid databases such as OneSource, Hoovers and Factiva to identify and collect information for extensive technical and commercial study of the Global Warehouse Robotics market. The key players in the market and its value chain were identified through secondary research and their market opinions were also gathered in a similar way through telephonic interviews and questionnaires. We have also studied the annual reports of these top market players. Interviews with key opinion leaders such as directors, managers, and marketing personnel were used extensively in understanding the need and emergence of Global Warehouse Robotics market.
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THE ARC ADVANTAGE An analytical model lies at the core of our process, ensuring logical consistency throughout our research. We complement the model with secondary data and interviews with industry experts to reflect the latest trends. With our final expert validation, we provide you with only the most accurate and actionable intelligence.
THE ARC PROCESS Analytical Method 1. Granular breakdown of drivers into factors 2. Validate all factors in terms of their present impact on the market 3. Assign weights to these factors in terms of their relevance and impact on the market 4. Build the Analytical Model ANALYTICAL MODEL
Base Method
1. Get a topdown estimate of the market 2. Follow it up with a bottom-up estimate of the market 3. Check forconsistency and new growth factors that are relevant over the next 10 Years
4. Build the Base model BASE MODEL
Consolidation Method 1. Granular breakdown of drivers into factors 2. Validate all factors in terms of their present impact on the market. 3. Assign weights to these factors in terms of their relevance and impact on the market. 4. Build the Consolidated Model
Delphi Verification 1. Verify the findings of the model with experts from across the value chain 2. Verify the findings with players across small and large enterprises 3. Tweak the model and add new factors 4. Finalize the ARC Model
CONSOLIDATED MODEL
ARC MODEL
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