Coordinator traffic diffusion for data intensive bluetooth zebros ieee projects

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FINAL YEAR PROJECTS IEEE PROJECTS 2013-2014 CONTACT: 9940098300, 9500075001 E-Mail:zebrosprojects@gmail.com

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ZEBROS PROJECTS COORDINATOR TRAFFIC DIFFUSION FOR DATAINTENSIVE BLUETOOTH TRANSMISSION IN REAL-TIME ELECTROCARDIOGRAPHY MONITORING

ABSTRACT This system proposes Coordinator Traffic Diffusion (CTD) method to redirect excessive traffic from Coordinator to the Sink in Electrocardiography (ECG) medical application. CTD router, which implements CTD design, automatically redirects ECG data traffic to the sink node without involving the Coordinator, and thus reliable realtime ECG monitoring service can be delivered precisely. CTD design is tested in both TI CC2530 Bluetooth platform and NS2 simulation. Experiment result demonstrates CTD design can assist routers in successfully delivering real-time ECG data samples reliably with the best transmission rate, 24 Kbps. This performance cannot be achieved by the original Bluetooth design. EXISTING SYSTEM The medical e-services include chronic disease monitoring and personal wellness and fitness monitoring, such as Electrocardiography (ECG) for heart-disease patients. An ECG is used to measure and diagnose abnormal heart rhythms, particularly abnormal rhythms caused by damage to the conductive tissue that carries electrical signals, or by electrolyte imbalances. In traditional ECG monitoring process, ECG data is first collected for some period of time and then semi-manually sent to experts for diagnosis. This asynchronous process requires heavy human intervention for its completion and might cause delay in Office Address: No 4 / Flat No 3D, Sai Kiran Apts, First Main Road, Kasturba Nagar, Chennai-20 web: www.zebros.in e mail : zebrosprojects@gmail.com mob: 99400 98300


ZEBROS PROJECTS emergency treatment. Therefore, to reduce overhead and improve medical efficiency, a real-time ECG monitoring system is prominent. Bluetooth is a typical wireless sensor communication technology and is expected to have an explosive growth in wireless control and monitoring applications because of its low cost and easy deployment. Besides home and building automation, Industrial control and embedded sensing applications, Bluetooth is also widely used in ehealthcare systems. Numerous medical monitoring systems, allowing patients to maintain their independence and mobility, have been developed. Furthermore, Bluetooth low radiation and low power consumption bring patients a healthy and reliable caretaking services.

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DESCRIPTION In recent years, the demand for healthcare e-services increases because of the population aging phenomenon, insufficient nursing manpower and sharply rising healthcare cost in all regions of the world, especially in the developed countries. The medical e-services include chronic disease monitoring and personal wellness and fitness monitoring, such as Electrocardiography (ECG) for heart-disease patients. An ECG is used to measure and diagnose abnormal heart rhythms, particularly abnormal rhythms caused by damage to the conductive tissue that carries electrical signals, or by electrolyte imbalances. Office Address: No 4 / Flat No 3D, Sai Kiran Apts, First Main Road, Kasturba Nagar, Chennai-20 web: www.zebros.in e mail : zebrosprojects@gmail.com mob: 99400 98300


ZEBROS PROJECTS In traditional ECG monitoring process, ECG data is first collected for some period of time and then semi-manually sent to experts for diagnosis. This asynchronous process requires heavy human intervention for its completion and might cause delay in emergency treatment. Therefore, to reduce overhead and improve medical efficiency, a real-time ECG monitoring system is prominent. Bluetooth is expected to have an explosive growth in wireless medical monitoring systems because it possesses the advantages of low cost, safe power strength and easy deployment. However, little work focuses on solving the bottleneck issue at the Bluetooth coordinator in a data-intensive system to guarantee transmission reliability of life-critical data. A large-scale wireless Bluetooth network, connecting numerous devices into a single network, is needed for building a thorough ECG monitoring system tracking dozens of patient health conditions concurrently. However, the deployment of a large number of Bluetooth devices potentially causes overwhelming traffic load at the Coordinator. In a Bluetooth network, a Coordinator forms a PAN and is responsible for forwarding all the sensed data in that PAN to the Sink, the backend server. Therefore, bottleneck problem at the Coordinator can paralyze the network and cause data loss or delay to bring life-threatening damage in medical system. This coordinator bottleneck issue becomes even more serious in data-intensive ECG system, which delivers a large amount of continuously sequential sensor data. There are three phases in our project. The phases in sequence from ECG to Monitoring Center are Phase 1: Data sensing phase, Phase 2: Bluetooth Transmission phase, and Phase 3: Monitoring phase We list the monitoring functionalities in four main parts:

Office Address: No 4 / Flat No 3D, Sai Kiran Apts, First Main Road, Kasturba Nagar, Chennai-20 web: www.zebros.in e mail : zebrosprojects@gmail.com mob: 99400 98300


ZEBROS PROJECTS 1. Part 1-Connection Settings: It determines the connection parameters for Bluetooth communications. The parameters include connection port number, data transmission rate, and ECG tracing line type. From proper connection setting, it can ensure the quality of received ECG data for real-time ECG data monitoring. 2. Part 2-Patient’s Information: from this control panel part, medical personnel can select different ECG signal types (Modified Lead II, MLII, is the default), the room number and patient ID of some specific patient they want to monitor. 3. Part 3-ECG Data Control: In general, medical personnel can record received ECG data, replay the data, and catch screenshots in data control panel whose functionalities are described below: SEND: After all parameters are set in Part 1 and Part 2, Send button start to retrieve the indicated patient’s ECG data from Database to be drawn on Monitoring Chart (Part 4). CLEAR: Clear ECG tracings on Monitoring Chart Screenshot: Catch screenshots from Monitoring Chart. SAVE FILE: Save the current patient’s ECG data in digital form to a file. CLOSE PORT: Close connections. 4. Part 4-ECG Monitoring Chart: It displays patients’ ECG tracings. ADVANTAGES 

Low cost

Less delay

Low noise

Low power consumptions

Office Address: No 4 / Flat No 3D, Sai Kiran Apts, First Main Road, Kasturba Nagar, Chennai-20 web: www.zebros.in e mail : zebrosprojects@gmail.com mob: 99400 98300


ZEBROS PROJECTS APPLICATIONS 

Medical applications

Security applications

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Java with Embedded

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The Institute of Electrical and Electronics Engineers or IEEE (read eye-triple-e) is Incorporated in the State of New York, United States. It was formed in 1963 by the merger of the Institute of Radio Engineers (IRE, founded 1912) and the American Institute of Electrical Engineers (AIEE, founded 1884). A membership organization comprised of engineers, scientists and students that sets standards for computers and Office Address: No 4 / Flat No 3D, Sai Kiran Apts, First Main Road, Kasturba Nagar, Chennai-20 web: www.zebros.in e mail : zebrosprojects@gmail.com mob: 99400 98300


ZEBROS PROJECTS communications. It is a nonprofit organization with more than 365,000 members in around 150 countries. The IEEE describes itself as "the world's largest technical professional society -promoting the development and application of electro technology and allied sciences for the benefit of humanity, the advancement of the profession, and the well-being of our members."

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Office Address: No 4 / Flat No 3D, Sai Kiran Apts, First Main Road, Kasturba Nagar, Chennai-20 web: www.zebros.in e mail : zebrosprojects@gmail.com mob: 99400 98300


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Abstract Existing System Disadvantages Proposed System Advantages Objective System Requirements System Architecture 2nd Review

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Use case Diagram Class Diagram Collaboration Diagram Sequence Diagram Activity Diagram Testing & test cases Partial Code Screenshot for First two module  Review Document Explanation Final Review

1st Review        

Literature Survey Module List Module Description Data Flow Diagram Level DFD Module Wise DFD Problem Definition Review Document Explanation 3rd Review

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Conclusion References Future Enhancement 65% code (Executable Format) Required Software Review Document Explanation

 Complete Code with Enhancement  Final Document (University Standard Format)  Complete Explanation for Project Concept & Code

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