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Optimal load balancing strategy for hybrid energy management system in DC microgrid with PV, fuel cell and battery storage

机译:具有PV,燃料电池和电池存储的DC微电网中混合能量管理系统的最佳负载平衡策略

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This paper presents a novel strategy for a hybrid energy management system consisting of a photovoltaic (PV) array, a polymer electrolyte membrane fuel cell (PEM-FC) as energy sources and Lithium ion (Li-ion) battery as an auxiliary energy storage. Such hybrid combination brings the reliability, redundancy and an overall energy efficiency in the system. DC-DC converters are used to interface PV-FC-battery combination. Energy management between the three sources is done by operating them in three different modes based on power requirement of load. PV operates in maximum power point tracking (MPPT) or desired power control (DPC) mode. Battery operates in voltage control mode simultaneously maintaining its state of charge (SOC) and maintains the DC link. Fuel cell (FC) operates in Power control modes (PCM). The active power demand is controlled by regulating DC link voltage. The system is simulated in MATLAB/Simulink for all operations and the results are presented along with modelling, analysis and frequency based control design.
机译:本文介绍了由光伏(PV)阵列组成的混合能量管理系统的新策略,该策略,作为能量源和锂离子(LI-离子)电池作为辅助能量储存的聚合物电解质膜燃料电池(PEM-FC)。这种混合组合带来了系统中可靠性,冗余和整体能量效率。 DC-DC转换器用于接口PV-FC电池组合。三种来源之间的能量管理是通过基于负载功率要求的三种不同模式操作来完成的。 PV在最大功率点跟踪(MPPT)或期望的功率控制(DPC)模式下运行。电池在电压控制模式下操作,同时保持其充电状态(SOC)并保持直流链路。燃料电池(FC)在电源控制模式(PCM)中运行。通过调节直流连接电压来控制有源电源需求。系统在MATLAB / Simulink中模拟了所有操作,结果以及基于建模,分析和频率的控制设计呈现。

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