The simulation analysis of piezoelectric transducer with multi-array configuration
Low frequency energy harvesting using piezoelectric is one of promising method on harvesting energy from a free source. This method offered powering low load and remote device application. However, due to its nature which is inconsistency in providing the magnitude of input, specifically in low freq...
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my.utm.925242021-09-30T15:14:28Z http://eprints.utm.my/id/eprint/92524/ The simulation analysis of piezoelectric transducer with multi-array configuration Zainal Abidin, Nik Ahmad Kamil Mohd. Nayan, Norkharziana Azizan, M. M. Ali, Azuwa Hussin, Nuriziani Azli, N. A. Nordin, N. M. TK Electrical engineering. Electronics Nuclear engineering Low frequency energy harvesting using piezoelectric is one of promising method on harvesting energy from a free source. This method offered powering low load and remote device application. However, due to its nature which is inconsistency in providing the magnitude of input, specifically in low frequency harvesting, better solution to stable up and increase the converted output is explored widely. There are a few parameter that influences in the piezoelectric output generation. These parameter includes the type of piezoelectric, piezoelectric array configuration, AC-DC converter and etc. The types of the piezoelectric used in this project are the circular piezoelectric. When there is a force (motion) exerted on the piezoelectric disk, electrical charge was produced which initiated the energy conversion. In this research, the configuration of array connection for piezoelectric were investigated. The system is tested with different load configuration in a range of 10 kΩ to 1 MΩ. The design and development of the piezoelectric array variant were series (S), parallel(P), series parallel (SP) and parallel-series (PS). The observation emphasized on finding the best types of piezoelectric array configuration in producing optimum output of the harvested power. The simulation part consists of designing, simulating and analysing the result are done by using PSIM software. For validation of the simulation result, the implementation design of the hardware prototype that supplies pressure to piezoelectric have been done. In conclusion, a proper implementation of piezoelectric array configuration will produce optimum power output which can fulfil the minimum requirement of energy for powering low load device. 2020 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/92524/1/NazihaAhmadAzli2020_TheSimulationAnalysisOfPiezoelectricTransducer.pdf Zainal Abidin, Nik Ahmad Kamil and Mohd. Nayan, Norkharziana and Azizan, M. M. and Ali, Azuwa and Hussin, Nuriziani and Azli, N. A. and Nordin, N. M. (2020) The simulation analysis of piezoelectric transducer with multi-array configuration. In: 1st International Conference on Emerging Electrical Energy, Electronics and Computing Technologies 2019, ICE4CT 2019, 29 - 31 October 2019, Melaka, Malaysia. http://dx.doi.org/10.1088/1742-6596/1432/1/012042 |
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TK Electrical engineering. Electronics Nuclear engineering Zainal Abidin, Nik Ahmad Kamil Mohd. Nayan, Norkharziana Azizan, M. M. Ali, Azuwa Hussin, Nuriziani Azli, N. A. Nordin, N. M. The simulation analysis of piezoelectric transducer with multi-array configuration |
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Low frequency energy harvesting using piezoelectric is one of promising method on harvesting energy from a free source. This method offered powering low load and remote device application. However, due to its nature which is inconsistency in providing the magnitude of input, specifically in low frequency harvesting, better solution to stable up and increase the converted output is explored widely. There are a few parameter that influences in the piezoelectric output generation. These parameter includes the type of piezoelectric, piezoelectric array configuration, AC-DC converter and etc. The types of the piezoelectric used in this project are the circular piezoelectric. When there is a force (motion) exerted on the piezoelectric disk, electrical charge was produced which initiated the energy conversion. In this research, the configuration of array connection for piezoelectric were investigated. The system is tested with different load configuration in a range of 10 kΩ to 1 MΩ. The design and development of the piezoelectric array variant were series (S), parallel(P), series parallel (SP) and parallel-series (PS). The observation emphasized on finding the best types of piezoelectric array configuration in producing optimum output of the harvested power. The simulation part consists of designing, simulating and analysing the result are done by using PSIM software. For validation of the simulation result, the implementation design of the hardware prototype that supplies pressure to piezoelectric have been done. In conclusion, a proper implementation of piezoelectric array configuration will produce optimum power output which can fulfil the minimum requirement of energy for powering low load device. |
format |
Conference or Workshop Item |
author |
Zainal Abidin, Nik Ahmad Kamil Mohd. Nayan, Norkharziana Azizan, M. M. Ali, Azuwa Hussin, Nuriziani Azli, N. A. Nordin, N. M. |
author_facet |
Zainal Abidin, Nik Ahmad Kamil Mohd. Nayan, Norkharziana Azizan, M. M. Ali, Azuwa Hussin, Nuriziani Azli, N. A. Nordin, N. M. |
author_sort |
Zainal Abidin, Nik Ahmad Kamil |
title |
The simulation analysis of piezoelectric transducer with multi-array configuration |
title_short |
The simulation analysis of piezoelectric transducer with multi-array configuration |
title_full |
The simulation analysis of piezoelectric transducer with multi-array configuration |
title_fullStr |
The simulation analysis of piezoelectric transducer with multi-array configuration |
title_full_unstemmed |
The simulation analysis of piezoelectric transducer with multi-array configuration |
title_sort |
simulation analysis of piezoelectric transducer with multi-array configuration |
publishDate |
2020 |
url |
http://eprints.utm.my/id/eprint/92524/1/NazihaAhmadAzli2020_TheSimulationAnalysisOfPiezoelectricTransducer.pdf http://eprints.utm.my/id/eprint/92524/ http://dx.doi.org/10.1088/1742-6596/1432/1/012042 |
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