Simulation of an energy harvesting circuit for low power application

Mohd Sofwan Bin Mohd Resali, Hanim Salleh

Research output: Chapter in Book/Report/Conference proceedingConference contribution

1 Citation (Scopus)

Abstract

One of the challenges in harvesting energy from ambient is to convert and store the usable power effectively. In this context, there is a need to understand and design an efficient energy harvesting power management circuitry. In view of the issues, this paper focuses on the simulation of an energy harvesting circuit for low power application. The circuit consists of a full-bridge AC-DC rectifier as target for the power input Pin more than 10mW, energy storage super capacitor by using switch-mode charge capacitor method, comparator or voltage multiplier circuit as to let the storage capacitor to store at the enough power before supply it to the load circuit and micro-power step-down regulator with a single supply voltage in the range of 3.2-34 V.

Original languageEnglish
Title of host publication2010 9th International Power and Energy Conference, IPEC 2010
Pages898-902
Number of pages5
DOIs
Publication statusPublished - 01 Dec 2010
Event2010 9th International Power and Energy Conference, IPEC 2010 - Singapore, Singapore
Duration: 27 Oct 201029 Oct 2010

Publication series

Name2010 9th International Power and Energy Conference, IPEC 2010

Other

Other2010 9th International Power and Energy Conference, IPEC 2010
CountrySingapore
CitySingapore
Period27/10/1029/10/10

Fingerprint

Energy harvesting
Networks (circuits)
Capacitors
Capacitor storage
Electric potential
Energy storage
Switches

All Science Journal Classification (ASJC) codes

  • Energy Engineering and Power Technology

Cite this

Bin Mohd Resali, M. S., & Salleh, H. (2010). Simulation of an energy harvesting circuit for low power application. In 2010 9th International Power and Energy Conference, IPEC 2010 (pp. 898-902). [5697093] (2010 9th International Power and Energy Conference, IPEC 2010). https://doi.org/10.1109/IPECON.2010.5697093
Bin Mohd Resali, Mohd Sofwan ; Salleh, Hanim. / Simulation of an energy harvesting circuit for low power application. 2010 9th International Power and Energy Conference, IPEC 2010. 2010. pp. 898-902 (2010 9th International Power and Energy Conference, IPEC 2010).
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abstract = "One of the challenges in harvesting energy from ambient is to convert and store the usable power effectively. In this context, there is a need to understand and design an efficient energy harvesting power management circuitry. In view of the issues, this paper focuses on the simulation of an energy harvesting circuit for low power application. The circuit consists of a full-bridge AC-DC rectifier as target for the power input Pin more than 10mW, energy storage super capacitor by using switch-mode charge capacitor method, comparator or voltage multiplier circuit as to let the storage capacitor to store at the enough power before supply it to the load circuit and micro-power step-down regulator with a single supply voltage in the range of 3.2-34 V.",
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Bin Mohd Resali, MS & Salleh, H 2010, Simulation of an energy harvesting circuit for low power application. in 2010 9th International Power and Energy Conference, IPEC 2010., 5697093, 2010 9th International Power and Energy Conference, IPEC 2010, pp. 898-902, 2010 9th International Power and Energy Conference, IPEC 2010, Singapore, Singapore, 27/10/10. https://doi.org/10.1109/IPECON.2010.5697093

Simulation of an energy harvesting circuit for low power application. / Bin Mohd Resali, Mohd Sofwan; Salleh, Hanim.

2010 9th International Power and Energy Conference, IPEC 2010. 2010. p. 898-902 5697093 (2010 9th International Power and Energy Conference, IPEC 2010).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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Bin Mohd Resali MS, Salleh H. Simulation of an energy harvesting circuit for low power application. In 2010 9th International Power and Energy Conference, IPEC 2010. 2010. p. 898-902. 5697093. (2010 9th International Power and Energy Conference, IPEC 2010). https://doi.org/10.1109/IPECON.2010.5697093