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PV power plant using hybrid energy storage system with improved efficiency

机译:使用混合储能系统提高效率的光伏电站

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In the last few years, the stationary battery started to be used as energy storage systems (ESS) in order to enhance the supply reliability of large-scale PV power plants, thereby enabling high penetration of PV-generated electricity into the electrical grid. Lately, one of the flow battery energy storage technologies, namely the Vanadium Redox Battery (VRB) started to be commercialised in the range of Mega-watts and it has attracted increasing interest of the renewable energy industry. The integration of a VRB-ESS with a large-scale PV plant also brings some new technical challenges. For instance, the VRB efficiency drops significantly when its output power is lower than 0.2 pu of its rated power. This paper proposes a VRB and supercapacitor (SC) hybrid energy storage system (HESS) to improve the efficiency of a standard sole VRB-ESS. The HESS management strategy is also introduced in this paper. An equivalent electrical model of the PV system including the HESS was implemented in MATLAB/Simulink/PLECS environment to analyse the operational performance of the proposed system.
机译:在过去的几年中,固定电池开始被用作能量存储系统(ESS),以增强大型PV电站的供电可靠性,从而使PV发电的高度渗透到电网中。最近,液流电池储能技术之一,即钒氧化还原电池(VRB)开始在兆瓦范围内商业化,并且引起了可再生能源行业的日益增长的兴趣。 VRB-ESS与大型光伏电站的集成也带来了一些新的技术挑战。例如,当VRB的输出功率低于其额定功率的0.2 pu时,VRB效率会大大降低。本文提出了一种VRB和超级电容器(SC)混合储能系统(HESS),以提高标准的唯一VRB-ESS的效率。本文还介绍了HESS管理策略。在MATLAB / Simulink / PLECS环境中实现了包括HESS的光伏系统的等效电气模型,以分析所提出系统的运行性能。

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