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Dynamic Consensus Algorithm Based Distributed Global Efficiency Optimization of a Droop Controlled DC Microgrid

机译:基于动态共识算法的下垂控制直流微电网分布式全局效率优化

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摘要

In a DC microgrid, several paralleled conversion systems are installed in distributed substations for transferring power from external grid to a DC microgrid. Droop control is used for the distributed load sharing among all the DC/DC converters. Considering the typical efficiency feature of power electronic converters, optimization method can be implemented in tertiary level for improving the overall system efficiency. However, optimization purposes usually require centralized communication, data acquisition and computation which might be either impractical or costly for dispersed systems. Accordingly, this paper proposes a dynamic consensus algorithm based distributed optimization method aiming at improving the system efficiency while offering higher expandability and flexibility when compared to centralized control. Hardware-in-the-loop (HIL) results are shown to demonstrate the effectiveness of the method.
机译:在直流微电网中,几个并行的转换系统安装在分布式变电站中,用于将电力从外部电网传输到直流微电网。下垂控制用于所有DC / DC转换器之间的分布式负载共享。考虑到电力电子转换器的典型效率特性,可以在第三级实施优化方法以提高整体系统效率。但是,优化目的通常需要集中通信,数据获取和计算,这对于分散的系统而言可能不切实际或成本很高。因此,本文提出了一种基于动态共识算法的分布式优化方法,旨在提高系统效率,同时与集中控制相比具有更高的可扩展性和灵活性。显示了硬件在环(HIL)结果,以证明该方法的有效性。

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