Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric Sensor

In this paper, a precession instrumentation system for measurement and characterization of human foot stress has been developed. The system is very useful to differentiate walking from running in race walking sport, by identification of the foot loss of contact with the ground. The system was develo...

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Main Authors: Didik R. SANTOSO, Taufiq A. SETYANTO
Format: Article
Language:English
Published: IFSA Publishing, S.L. 2013-08-01
Series:Sensors & Transducers
Subjects:
Online Access:http://www.sensorsportal.com/HTML/DIGEST/august_2013/P_1295.pdf
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spelling doaj-951e7a44a89e4a39a0d14d9940e8c1ef2020-11-24T21:38:03ZengIFSA Publishing, S.L.Sensors & Transducers2306-85151726-54792013-08-011558120127Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric SensorDidik R. SANTOSO0Taufiq A. SETYANTO1Instrumentation Lab. Physics Dept., Brawijaya University, Jl. Veteran Malang, 65145, IndonesiaIndonesian Hydrodynamics Lab.-BPPT, Jl. Hidrodinamika Surabaya, 60112, IndonesiaIn this paper, a precession instrumentation system for measurement and characterization of human foot stress has been developed. The system is very useful to differentiate walking from running in race walking sport, by identification of the foot loss of contact with the ground. The system was developed in two main units: sensing unit (RTU) and signal processing unit (MTU). The RTU consist of piezoelectric stress sensor module and data acquisition module. The data acquisition is developed based on microcontroller to achieve the system as small as possible, but powerful. The MTU consist of computer system and several program procedures to identify the foot stress signals and to differentiate walking from running. Data communication between RTU and MTU can be conducted through wires by using RS485 protocol, or wirelessly by adding a pair of radio transceiver device. The system can be operated by online and real time. Result of the experiments show that the developed system has good performance. http://www.sensorsportal.com/HTML/DIGEST/august_2013/P_1295.pdfRace walkingJudgingInstrumentationPiezoelectric sensorSignal processing.
collection DOAJ
language English
format Article
sources DOAJ
author Didik R. SANTOSO
Taufiq A. SETYANTO
spellingShingle Didik R. SANTOSO
Taufiq A. SETYANTO
Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric Sensor
Sensors & Transducers
Race walking
Judging
Instrumentation
Piezoelectric sensor
Signal processing.
author_facet Didik R. SANTOSO
Taufiq A. SETYANTO
author_sort Didik R. SANTOSO
title Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric Sensor
title_short Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric Sensor
title_full Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric Sensor
title_fullStr Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric Sensor
title_full_unstemmed Development of Precession Instrumentation System for Differentiate Walking from Running in Race Walking by Using Piezoelectric Sensor
title_sort development of precession instrumentation system for differentiate walking from running in race walking by using piezoelectric sensor
publisher IFSA Publishing, S.L.
series Sensors & Transducers
issn 2306-8515
1726-5479
publishDate 2013-08-01
description In this paper, a precession instrumentation system for measurement and characterization of human foot stress has been developed. The system is very useful to differentiate walking from running in race walking sport, by identification of the foot loss of contact with the ground. The system was developed in two main units: sensing unit (RTU) and signal processing unit (MTU). The RTU consist of piezoelectric stress sensor module and data acquisition module. The data acquisition is developed based on microcontroller to achieve the system as small as possible, but powerful. The MTU consist of computer system and several program procedures to identify the foot stress signals and to differentiate walking from running. Data communication between RTU and MTU can be conducted through wires by using RS485 protocol, or wirelessly by adding a pair of radio transceiver device. The system can be operated by online and real time. Result of the experiments show that the developed system has good performance.
topic Race walking
Judging
Instrumentation
Piezoelectric sensor
Signal processing.
url http://www.sensorsportal.com/HTML/DIGEST/august_2013/P_1295.pdf
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