Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications
A battery-less energy harvesting interface circuit to extract electrical energy from vibration has been proposed in this paper for low power applications. The voltage doubler integrated with DC – DC boost converter circuits were designed and simulated using MultiSIM software. The circuit was then fa...
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2017
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my.uthm.eprints.41692021-11-25T06:15:13Z http://eprints.uthm.edu.my/4169/ Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications Amirnudin, Amirul Adlan Mustafa, Farahiyah Mohd Asry, Anis Maisarah Yi, Sy Sim TJ807-830 Renewable energy sources A battery-less energy harvesting interface circuit to extract electrical energy from vibration has been proposed in this paper for low power applications. The voltage doubler integrated with DC – DC boost converter circuits were designed and simulated using MultiSIM software. The circuit was then fabricated onto a printed circuit board (PCB), using standard fabrication process. The Cockcroft Walton doubler was chosen to be implemented in this study by utilizing diode-capacitor topologies with additional RC low pass filter. The DC – DC boost converter has been designed using a CMOS step -up DC – DC switching regulators, which are suitable for low input voltage system. The achievement of this interface circuit was able to boost up the maximum voltage of 5 V for input voltage of 800 mV. Institute of Advanced Engineering and Science 2017 Article PeerReviewed Amirnudin, Amirul Adlan and Mustafa, Farahiyah and Mohd Asry, Anis Maisarah and Yi, Sy Sim (2017) Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications. International Journal of Power Electronics and Drive System (IJPEDS), 8 (4). pp. 1943-1947. ISSN 2088-8694 |
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TJ807-830 Renewable energy sources Amirnudin, Amirul Adlan Mustafa, Farahiyah Mohd Asry, Anis Maisarah Yi, Sy Sim Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications |
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A battery-less energy harvesting interface circuit to extract electrical energy from vibration has been proposed in this paper for low power applications. The voltage doubler integrated with DC – DC boost converter circuits were designed and simulated using MultiSIM software. The circuit was then fabricated onto a printed circuit board (PCB), using standard fabrication process. The Cockcroft Walton doubler was chosen to be implemented in this study by utilizing diode-capacitor topologies with additional RC low pass filter. The DC – DC boost converter has been designed using a CMOS step -up DC – DC switching regulators, which are suitable for low input voltage system. The achievement of this interface circuit was able to boost up the maximum voltage of 5 V for input voltage of 800 mV. |
format |
Article |
author |
Amirnudin, Amirul Adlan Mustafa, Farahiyah Mohd Asry, Anis Maisarah Yi, Sy Sim |
author_facet |
Amirnudin, Amirul Adlan Mustafa, Farahiyah Mohd Asry, Anis Maisarah Yi, Sy Sim |
author_sort |
Amirnudin, Amirul Adlan |
title |
Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications |
title_short |
Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications |
title_full |
Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications |
title_fullStr |
Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications |
title_full_unstemmed |
Vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications |
title_sort |
vibration based energy harvesting interface circuit using diode-capacitor topologies for low power applications |
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Institute of Advanced Engineering and Science |
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2017 |
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http://eprints.uthm.edu.my/4169/ |
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1738581216546783232 |