Multi-input DC boost converter for grid connected hybrid PV/FC/Battery power system

S. Hosseini, S. Danyali, F. Nejabatkhah, S. M. Mozafari Niapoor
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引用次数: 54

Abstract

This paper proposes a new multi-input dc boost converter for grid-connected hybrid Photovoltaic (PV)/Fuel cell (FC)/Battery power system, supplying a residential load. In this structure each switching cycle of proposed boost converter is divided in to five switching periods in comparison with conventional structure. These switching periods introduce five different duty ratios for the proposed boost converter. With utilizing these duty ratios, extracting maximum available PV power, setting FC operation power on optimal range and charging/discharging of battery is possible. For achieving these goals, participation factor of hybrid system (G) is defined to manage the system power flow. Considering the FC optimal operation range, power of PV array and load, different operating modes of system are analyzed. The proposed system has been simulated by PSCAD/EMTDC linked to MATLAB software for different operating modes. The simulation results have shown the performance of the novel structure with desired features.
用于并网混合光伏/FC/电池供电系统的多输入直流升压变换器
本文提出了一种新型的多输入直流升压变换器,用于并网光伏/燃料电池/电池混合电力系统,为居民供电。与传统结构相比,该结构将升压变换器的每个开关周期划分为五个开关周期。这些开关周期为所提出的升压变换器引入了五种不同的占空比。利用这些占空比,提取最大可用光伏功率,将FC运行功率设置在最佳范围内,并且可以实现电池的充电/放电。为了实现这些目标,定义了混合系统的参与系数G,对系统潮流进行管理。考虑FC最优运行范围、光伏阵列功率和负载,分析了系统的不同运行模式。采用PSCAD/EMTDC结合MATLAB软件对系统进行了不同工作模式的仿真。仿真结果表明,该结构具有良好的性能。
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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