Wideband piezoelectric energy harvester for condition monitoring in power plant application
Recent advances in the wireless applications have demanded the need for continuous supply of power to power up wireless sensor network. Some possible applications of wireless sensor network vary from detecting formation of crack on aircraft, controlling temperature and light in the energy efficient...
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my.uniten.dspace-306412023-12-29T15:50:43Z Wideband piezoelectric energy harvester for condition monitoring in power plant application Salleh H. Rashid N.M. 24067645400 36182466700 Aircraft control Condition monitoring Crack detection Energy efficiency Piezoelectric devices Power plants Sensors Wireless telecommunication systems Ambient vibrations Electrical energy Energy efficient building Frequency ranges Manufacturing process equipment Micro power generator Overall costs Piezoelectric energy Power plant applications PZT Self-powered Shape factor Wide-band Wireless application Wireless nodes Wireless sensor Sensor nodes Recent advances in the wireless applications have demanded the need for continuous supply of power to power up wireless sensor network. Some possible applications of wireless sensor network vary from detecting formation of crack on aircraft, controlling temperature and light in the energy efficient building even in manufacturing process equipment. The wireless sensor device which uses battery can cause problems when the wireless nodes are large in number and when the nodes are placed in the difficult area to access. Thus, it is advantageous for a device to be capable of extracting energy from the environment, making it self-powered, self-sustaining and lowering overall cost of the wireless network. Improvement in integrated circuit (IC) technology has made the overall power consumption of circuit very small which leads to a very promising application of the vibration based micro power generator. This paper focuses on the design of the wideband piezoelectric energy harvester for condition monitoring in power plant application. The generator uses the piezoelectric PZT of type PSI-5A-S4-ENH to transform ambient vibrations into electrical energy. The frequency range of the wideband piezoelectric energy harvester is within 50 Hz to 150 Hz. Different factors affecting the performance such as the shape factor is also investigated. Some experimental results are presented and compared to the previous similar work. Final 2023-12-29T07:50:43Z 2023-12-29T07:50:43Z 2009 Conference paper 2-s2.0-84871410857 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84871410857&partnerID=40&md5=29eb68b5c257a544c7289c99d5c8fa96 https://irepository.uniten.edu.my/handle/123456789/30641 7 4577 4584 Scopus |
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Aircraft control Condition monitoring Crack detection Energy efficiency Piezoelectric devices Power plants Sensors Wireless telecommunication systems Ambient vibrations Electrical energy Energy efficient building Frequency ranges Manufacturing process equipment Micro power generator Overall costs Piezoelectric energy Power plant applications PZT Self-powered Shape factor Wide-band Wireless application Wireless nodes Wireless sensor Sensor nodes |
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Aircraft control Condition monitoring Crack detection Energy efficiency Piezoelectric devices Power plants Sensors Wireless telecommunication systems Ambient vibrations Electrical energy Energy efficient building Frequency ranges Manufacturing process equipment Micro power generator Overall costs Piezoelectric energy Power plant applications PZT Self-powered Shape factor Wide-band Wireless application Wireless nodes Wireless sensor Sensor nodes Salleh H. Rashid N.M. Wideband piezoelectric energy harvester for condition monitoring in power plant application |
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Recent advances in the wireless applications have demanded the need for continuous supply of power to power up wireless sensor network. Some possible applications of wireless sensor network vary from detecting formation of crack on aircraft, controlling temperature and light in the energy efficient building even in manufacturing process equipment. The wireless sensor device which uses battery can cause problems when the wireless nodes are large in number and when the nodes are placed in the difficult area to access. Thus, it is advantageous for a device to be capable of extracting energy from the environment, making it self-powered, self-sustaining and lowering overall cost of the wireless network. Improvement in integrated circuit (IC) technology has made the overall power consumption of circuit very small which leads to a very promising application of the vibration based micro power generator. This paper focuses on the design of the wideband piezoelectric energy harvester for condition monitoring in power plant application. The generator uses the piezoelectric PZT of type PSI-5A-S4-ENH to transform ambient vibrations into electrical energy. The frequency range of the wideband piezoelectric energy harvester is within 50 Hz to 150 Hz. Different factors affecting the performance such as the shape factor is also investigated. Some experimental results are presented and compared to the previous similar work. |
author2 |
24067645400 |
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24067645400 Salleh H. Rashid N.M. |
format |
Conference paper |
author |
Salleh H. Rashid N.M. |
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Salleh H. |
title |
Wideband piezoelectric energy harvester for condition monitoring in power plant application |
title_short |
Wideband piezoelectric energy harvester for condition monitoring in power plant application |
title_full |
Wideband piezoelectric energy harvester for condition monitoring in power plant application |
title_fullStr |
Wideband piezoelectric energy harvester for condition monitoring in power plant application |
title_full_unstemmed |
Wideband piezoelectric energy harvester for condition monitoring in power plant application |
title_sort |
wideband piezoelectric energy harvester for condition monitoring in power plant application |
publishDate |
2023 |
_version_ |
1806424504913625088 |