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An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring

An attachable electromagnetic-energy-harvester driven wireless vibration-sensing system for monitoring milling-processes and cutter-wear/breakage-conditions is demonstrated. The system includes an electromagnetic energy harvester, three single-axis Micro Electro-Mechanical Systems (MEMS) acceleromet...

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Autores principales: Chung, Tien-Kan, Yeh, Po-Chen, Lee, Hao, Lin, Cheng-Mao, Tseng, Chia-Yung, Lo, Wen-Tuan, Wang, Chieh-Min, Wang, Wen-Chin, Tu, Chi-Jen, Tasi, Pei-Yuan, Chang, Jui-Wen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4813844/
https://www.ncbi.nlm.nih.gov/pubmed/26907297
http://dx.doi.org/10.3390/s16030269
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author Chung, Tien-Kan
Yeh, Po-Chen
Lee, Hao
Lin, Cheng-Mao
Tseng, Chia-Yung
Lo, Wen-Tuan
Wang, Chieh-Min
Wang, Wen-Chin
Tu, Chi-Jen
Tasi, Pei-Yuan
Chang, Jui-Wen
author_facet Chung, Tien-Kan
Yeh, Po-Chen
Lee, Hao
Lin, Cheng-Mao
Tseng, Chia-Yung
Lo, Wen-Tuan
Wang, Chieh-Min
Wang, Wen-Chin
Tu, Chi-Jen
Tasi, Pei-Yuan
Chang, Jui-Wen
author_sort Chung, Tien-Kan
collection PubMed
description An attachable electromagnetic-energy-harvester driven wireless vibration-sensing system for monitoring milling-processes and cutter-wear/breakage-conditions is demonstrated. The system includes an electromagnetic energy harvester, three single-axis Micro Electro-Mechanical Systems (MEMS) accelerometers, a wireless chip module, and corresponding circuits. The harvester consisting of magnets with a coil uses electromagnetic induction to harness mechanical energy produced by the rotating spindle in milling processes and consequently convert the harnessed energy to electrical output. The electrical output is rectified by the rectification circuit to power the accelerometers and wireless chip module. The harvester, circuits, accelerometer, and wireless chip are integrated as an energy-harvester driven wireless vibration-sensing system. Therefore, this completes a self-powered wireless vibration sensing system. For system testing, a numerical-controlled machining tool with various milling processes is used. According to the test results, the system is fully self-powered and able to successfully sense vibration in the milling processes. Furthermore, by analyzing the vibration signals (i.e., through analyzing the electrical outputs of the accelerometers), criteria are successfully established for the system for real-time accurate simulations of the milling-processes and cutter-conditions (such as cutter-wear conditions and cutter-breaking occurrence). Due to these results, our approach can be applied to most milling and other machining machines in factories to realize more smart machining technologies.
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spelling pubmed-48138442016-04-06 An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring Chung, Tien-Kan Yeh, Po-Chen Lee, Hao Lin, Cheng-Mao Tseng, Chia-Yung Lo, Wen-Tuan Wang, Chieh-Min Wang, Wen-Chin Tu, Chi-Jen Tasi, Pei-Yuan Chang, Jui-Wen Sensors (Basel) Article An attachable electromagnetic-energy-harvester driven wireless vibration-sensing system for monitoring milling-processes and cutter-wear/breakage-conditions is demonstrated. The system includes an electromagnetic energy harvester, three single-axis Micro Electro-Mechanical Systems (MEMS) accelerometers, a wireless chip module, and corresponding circuits. The harvester consisting of magnets with a coil uses electromagnetic induction to harness mechanical energy produced by the rotating spindle in milling processes and consequently convert the harnessed energy to electrical output. The electrical output is rectified by the rectification circuit to power the accelerometers and wireless chip module. The harvester, circuits, accelerometer, and wireless chip are integrated as an energy-harvester driven wireless vibration-sensing system. Therefore, this completes a self-powered wireless vibration sensing system. For system testing, a numerical-controlled machining tool with various milling processes is used. According to the test results, the system is fully self-powered and able to successfully sense vibration in the milling processes. Furthermore, by analyzing the vibration signals (i.e., through analyzing the electrical outputs of the accelerometers), criteria are successfully established for the system for real-time accurate simulations of the milling-processes and cutter-conditions (such as cutter-wear conditions and cutter-breaking occurrence). Due to these results, our approach can be applied to most milling and other machining machines in factories to realize more smart machining technologies. MDPI 2016-02-23 /pmc/articles/PMC4813844/ /pubmed/26907297 http://dx.doi.org/10.3390/s16030269 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chung, Tien-Kan
Yeh, Po-Chen
Lee, Hao
Lin, Cheng-Mao
Tseng, Chia-Yung
Lo, Wen-Tuan
Wang, Chieh-Min
Wang, Wen-Chin
Tu, Chi-Jen
Tasi, Pei-Yuan
Chang, Jui-Wen
An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring
title An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring
title_full An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring
title_fullStr An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring
title_full_unstemmed An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring
title_short An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring
title_sort attachable electromagnetic energy harvester driven wireless sensing system demonstrating milling-processes and cutter-wear/breakage-condition monitoring
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4813844/
https://www.ncbi.nlm.nih.gov/pubmed/26907297
http://dx.doi.org/10.3390/s16030269
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