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Adaptive Droop Control Strategy for Load Sharing and Circulating Current Minimization in Low-Voltage Standalone DC Microgrid

机译:低压独立直流微电网中负载分配和环流最小化的自适应下垂控制策略

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This paper addresses load current sharing and circulating current issues of parallel-connected dcdc converters in low-voltage dc microgrid. Droop control is the popular technique for load current sharing in dc microgrid. The main drawbacks of the conventional droop method are poor current sharing and drop in dc grid voltage due to the droop action. Circulating current issue will also arise due to mismatch in the converters output voltages. In this work, a figure of merit called droop index (DI) is introduced in order to improve the performance of dc microgrid, which is a function of normalized current sharing difference and losses in the output side of the converters. This proposed adaptive droop control method minimizes the circulating current and current sharing difference between the converters based on instantaneous virtual resistance . Using shifting, the proposed method also eliminates the tradeoff between current sharing difference and voltage regulation. The detailed analysis and design procedure are explained for two dcdc boost converters connected in parallel. The effectiveness of the proposed method is verified by detailed simulation and experimental studies.
机译:本文解决了低压直流微电网中并联DCDC转换器的负载电流共享和循环电流问题。下垂控制是用于直流微电网中负载电流共享的流行技术。传统的下垂方法的主要缺点是均流差以及由于下垂作用导致直流电网电压下降。由于转换器输出电压不匹配,也会出现循环电流问题。在这项工作中,为了改善直流微电网的性能,引入了一种称为下降指数(DI)的品质因数,这是归一化均流差异和转换器输出侧损耗的函数。提出的自适应下垂控制方法基于瞬时虚拟电阻最小化了转换器之间的循环电流和均流差异。通过移位,提出的方法还消除了均流差异与电压调节之间的折衷。详细说明了两个并联的dcdc升压转换器的分析和设计过程。通过详细的仿真和实验研究验证了该方法的有效性。

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