INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM
INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Human movement analysis and tracking involves assessing diverse variables to enhance and improve the life of a person. The movement of humans can be continuously tracked by incorporating an Inertial Measurement Unit(IM...
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creator | Marimuthu, K Mahapatra, R.P R, Anitha Karthick, S Shadrach, S Finney Daniel Patil, Ganapati Appasaheb Chakravarthy, A. S. N Ponnusamy, Sivakumar Khasim, Syed Saravanakumar, V V. Sudheer Kumar, Sistla |
description | INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Human movement analysis and tracking involves assessing diverse variables to enhance and improve the life of a person. The movement of humans can be continuously tracked by incorporating an Inertial Measurement Unit(IMU) based system. These IMUs have extended battery life. The motion signals are acquired digitally. The analysis and acquisition of signal is carried out by online classifiers. There is real time analysis of the collected signals. This system serves as an effective platform and data is collected through a 3 axis accelerometer, magnetometer and a gyroscope. The inertial data is stored using a micro SD card and Bluetooth is used for communication. A PIC microcontroller is utilised to process data and orientation estimation algorithm is deployed. The information is transferred real time to the computer through a wireless body sensor network. The proposed IMU system provides enhanced performance and is comparatively of low cost. INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Drawings: uSD Bluetooth module module USER INTERFACE - SPI UA Accelerometer PUSH-BUTTrON dsMtC 8-COLOR LED Battery Magnetometer management Figure 1: Block diagram of the IMU system. |
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Sudheer Kumar, Sistla</creator><creatorcontrib>Marimuthu, K ; Mahapatra, R.P ; R, Anitha ; Karthick, S ; Shadrach, S Finney Daniel ; Patil, Ganapati Appasaheb ; Chakravarthy, A. S. N ; Ponnusamy, Sivakumar ; Khasim, Syed ; Saravanakumar, V ; V. Sudheer Kumar, Sistla</creatorcontrib><description>INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Human movement analysis and tracking involves assessing diverse variables to enhance and improve the life of a person. The movement of humans can be continuously tracked by incorporating an Inertial Measurement Unit(IMU) based system. These IMUs have extended battery life. The motion signals are acquired digitally. The analysis and acquisition of signal is carried out by online classifiers. There is real time analysis of the collected signals. This system serves as an effective platform and data is collected through a 3 axis accelerometer, magnetometer and a gyroscope. The inertial data is stored using a micro SD card and Bluetooth is used for communication. A PIC microcontroller is utilised to process data and orientation estimation algorithm is deployed. The information is transferred real time to the computer through a wireless body sensor network. The proposed IMU system provides enhanced performance and is comparatively of low cost. 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S. N</creatorcontrib><creatorcontrib>Ponnusamy, Sivakumar</creatorcontrib><creatorcontrib>Khasim, Syed</creatorcontrib><creatorcontrib>Saravanakumar, V</creatorcontrib><creatorcontrib>V. Sudheer Kumar, Sistla</creatorcontrib><title>INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM</title><description>INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Human movement analysis and tracking involves assessing diverse variables to enhance and improve the life of a person. The movement of humans can be continuously tracked by incorporating an Inertial Measurement Unit(IMU) based system. These IMUs have extended battery life. The motion signals are acquired digitally. The analysis and acquisition of signal is carried out by online classifiers. There is real time analysis of the collected signals. This system serves as an effective platform and data is collected through a 3 axis accelerometer, magnetometer and a gyroscope. The inertial data is stored using a micro SD card and Bluetooth is used for communication. A PIC microcontroller is utilised to process data and orientation estimation algorithm is deployed. The information is transferred real time to the computer through a wireless body sensor network. The proposed IMU system provides enhanced performance and is comparatively of low cost. INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Drawings: uSD Bluetooth module module USER INTERFACE - SPI UA Accelerometer PUSH-BUTTrON dsMtC 8-COLOR LED Battery Magnetometer management Figure 1: Block diagram of the IMU system.</description><subject>DIAGNOSIS</subject><subject>GYROSCOPIC INSTRUMENTS</subject><subject>HUMAN NECESSITIES</subject><subject>HYGIENE</subject><subject>IDENTIFICATION</subject><subject>MEASURING</subject><subject>MEASURING DISTANCES, LEVELS OR BEARINGS</subject><subject>MEDICAL OR VETERINARY SCIENCE</subject><subject>NAVIGATION</subject><subject>PHOTOGRAMMETRY OR VIDEOGRAMMETRY</subject><subject>PHYSICS</subject><subject>SURGERY</subject><subject>SURVEYING</subject><subject>TESTING</subject><fulltext>true</fulltext><rsrctype>patent</rsrctype><creationdate>2021</creationdate><recordtype>patent</recordtype><sourceid>EVB</sourceid><recordid>eNqNyrEKwjAQgOEsDqK-w4GzEGNBHM9ypYHeBZML4lSKxEm0UN8fRXwAp_8fvrk5eaGoHjtgwpQjMYlCFq_QhAhnwojHjqAOol5yyAnazCjAQX0Q8PJhjN9Pl6TESzO7DfeprH5dmHVDWrebMj77Mo3DtTzKq8fsrLNb6w7VHqvdf-oNqKIwvQ</recordid><startdate>20210128</startdate><enddate>20210128</enddate><creator>Marimuthu, K</creator><creator>Mahapatra, R.P</creator><creator>R, Anitha</creator><creator>Karthick, S</creator><creator>Shadrach, S Finney Daniel</creator><creator>Patil, Ganapati Appasaheb</creator><creator>Chakravarthy, A. S. N</creator><creator>Ponnusamy, Sivakumar</creator><creator>Khasim, Syed</creator><creator>Saravanakumar, V</creator><creator>V. Sudheer Kumar, Sistla</creator><scope>EVB</scope></search><sort><creationdate>20210128</creationdate><title>INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM</title><author>Marimuthu, K ; Mahapatra, R.P ; R, Anitha ; Karthick, S ; Shadrach, S Finney Daniel ; Patil, Ganapati Appasaheb ; Chakravarthy, A. S. N ; Ponnusamy, Sivakumar ; Khasim, Syed ; Saravanakumar, V ; V. 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S. N</creatorcontrib><creatorcontrib>Ponnusamy, Sivakumar</creatorcontrib><creatorcontrib>Khasim, Syed</creatorcontrib><creatorcontrib>Saravanakumar, V</creatorcontrib><creatorcontrib>V. Sudheer Kumar, Sistla</creatorcontrib><collection>esp@cenet</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Marimuthu, K</au><au>Mahapatra, R.P</au><au>R, Anitha</au><au>Karthick, S</au><au>Shadrach, S Finney Daniel</au><au>Patil, Ganapati Appasaheb</au><au>Chakravarthy, A. S. N</au><au>Ponnusamy, Sivakumar</au><au>Khasim, Syed</au><au>Saravanakumar, V</au><au>V. Sudheer Kumar, Sistla</au><format>patent</format><genre>patent</genre><ristype>GEN</ristype><title>INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM</title><date>2021-01-28</date><risdate>2021</risdate><abstract>INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Human movement analysis and tracking involves assessing diverse variables to enhance and improve the life of a person. The movement of humans can be continuously tracked by incorporating an Inertial Measurement Unit(IMU) based system. These IMUs have extended battery life. The motion signals are acquired digitally. The analysis and acquisition of signal is carried out by online classifiers. There is real time analysis of the collected signals. This system serves as an effective platform and data is collected through a 3 axis accelerometer, magnetometer and a gyroscope. The inertial data is stored using a micro SD card and Bluetooth is used for communication. A PIC microcontroller is utilised to process data and orientation estimation algorithm is deployed. The information is transferred real time to the computer through a wireless body sensor network. The proposed IMU system provides enhanced performance and is comparatively of low cost. INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM Drawings: uSD Bluetooth module module USER INTERFACE - SPI UA Accelerometer PUSH-BUTTrON dsMtC 8-COLOR LED Battery Magnetometer management Figure 1: Block diagram of the IMU system.</abstract><oa>free_for_read</oa></addata></record> |
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subjects | DIAGNOSIS GYROSCOPIC INSTRUMENTS HUMAN NECESSITIES HYGIENE IDENTIFICATION MEASURING MEASURING DISTANCES, LEVELS OR BEARINGS MEDICAL OR VETERINARY SCIENCE NAVIGATION PHOTOGRAMMETRY OR VIDEOGRAMMETRY PHYSICS SURGERY SURVEYING TESTING |
title | INERTIAL MEASUREMENT UNIT FOR WEARABLE CONTINUOUS HUMAN MOTION INFORMATION SYSTEM |
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