Optimal control of a hybrid system of photovoltaic and fuel cell in residential use

Juniku Matsuura, K. Kawahara, Zoka Yoshifumi
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引用次数: 4

Abstract

In recent years, a photovoltaic solar energy system has widely spread on residential areas as an alternative energy of a fossil fuel. Since the output of photovoltaic (PV) cell sharply changes according to weather conditions, a certain power storage device is required to smooth the output and to meet electricity demand equivalent to a household load. Such devices are effective also a backup power at the time of a disaster like the Great East Japan Earthquake. A fuel cell (FC) is a promising candidate for long term energy system because hydrogen is supplied stably. We have so far proposed a hybrid system of PV and FC in residential use. The proposed system is consists of PV array, FC stack, electrolyzer (EL), hydrogen storage tank, and power conversion devices. This paper deals with a mixed integer programming problem for determining the amount of hydrogen flow and hydrogen remaining amount in the storage tank. We verify the effectiveness of the proposed method through numerical simulations.
住宅光伏与燃料电池混合系统的最优控制
近年来,光伏太阳能系统作为化石燃料的替代能源在住宅小区得到了广泛的推广。由于光伏电池的输出随着天气条件的变化而急剧变化,因此需要一定的电力存储装置来平滑输出,以满足相当于家庭负荷的电力需求。这种装置在像东日本大地震这样的灾难发生时也是有效的备用电源。燃料电池因其稳定的氢供应而成为一种很有前途的长期能源系统的候选者。到目前为止,我们已经提出了一种住宅用光伏和FC混合系统。该系统由光伏阵列、FC堆叠、电解槽(EL)、储氢罐和功率转换装置组成。本文研究了确定储罐内氢气流量和氢气剩余量的混合整数规划问题。通过数值仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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