Control algorithm of renewable energy power plant supplied by fuel cell/solar cell/ supercapacitor power source

P. Thounthong, S. Sikkabut, P. Sethakul, B. Davat
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引用次数: 10

Abstract

A renewable energy hybrid power plant, fed by photovoltaic (PV) and fuel cell (FC) sources with a supercapacitor storage device and suitable for distributed generation applications, is proposed herein. The PV is used as the main generator; the FC acts as a power source, feeding only the insufficiency power (steady-state) from the PV; and the supercapacitor functions as an auxiliary source for supplying the deficiency power (transient and steady-state) from the PV and the FC. Using the nonlinear approach based on the flatness property, we propose a simple solution to the dynamics, optimization, stabilization, and robustness problems in the hybrid power system. This is the key innovative contribution of this research paper. The prototype small-scale power plant studied was composed of a PEMFC system (1.2 kW), a PV array (0.8 kW), and a supercapacitor module (100 F). Experimental results in laboratory authenticate the excellent control algorithm during load cycles.
燃料电池/太阳能电池/超级电容器供电的可再生能源电站控制算法
提出了一种适用于分布式发电的可再生能源混合电站,该电站由光伏(PV)和燃料电池(FC)供电,并带有超级电容器存储装置。光伏作为主发电机;FC作为电源,只提供来自PV的不足功率(稳态);超级电容器作为辅助电源,用于供应来自PV和FC的缺电(瞬态和稳态)。采用基于平面性的非线性方法,对混合动力系统的动力学、优化、镇定和鲁棒性问题提出了一种简单的解决方法。这是本研究论文的关键创新贡献。研究的原型小型发电厂由PEMFC系统(1.2 kW)、光伏阵列(0.8 kW)和超级电容器模块(100 F)组成。实验室实验结果验证了负载周期内的优秀控制算法。
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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