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Voltage Gain Derivation Based on Energy-Balanced Criterion for a Novel Hybrid-Input PV-Wind Power Conversion System

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  • Chih-Lung Shen
  • Tsair-Chun Liang
  • Siou-Hong Zhou
  • Su-Wen Wang

Abstract

This paper applies energy-balanced criterion to a novel hybrid-input PV-wind power conversion system (HPWPCS) for voltage gain derivation. With the energy-balanced concept, complicated mathematical problems related to voltage gain derivation can be readily resolved. Based on the derived results, it is proven that the proposed HPWPCS is able to process two different kinds of renewable energy resources simultaneously. Even though the HPWPCS includes seven capacitors and three magnetic components, its voltage gain still can be found by the mathematical analysis. In the theoretical derivation, only the energy status of output inductor is dealt with such that complicated derivation procedure is avoided. This analysis method can also be applied to other hybrid green-energy conversion systems. In this paper, a 200 W 50 kHz prototype of HPWPCS is built and examined to verify the mathematical results.

Suggested Citation

  • Chih-Lung Shen & Tsair-Chun Liang & Siou-Hong Zhou & Su-Wen Wang, 2015. "Voltage Gain Derivation Based on Energy-Balanced Criterion for a Novel Hybrid-Input PV-Wind Power Conversion System," Mathematical Problems in Engineering, Hindawi, vol. 2015, pages 1-8, March.
  • Handle: RePEc:hin:jnlmpe:623161
    DOI: 10.1155/2015/623161
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