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An Integrated Series-Parallel Microgrid Structure and its Unified Distributed Control

机译:集成的串联-并联微电网结构及其统一的分布式控制

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This paper presents an integrated series-parallel microgrid(MG), where a few distributed generation(DG) units in series type are used to form a DG string, then DG strings supply power to the common load in parallel type. With this structure, low-voltage devices could be integrated into MG without DC-DC boost converters. It provides a more flexible and efficient way to form higher voltage level MG. But it is difficult to find a decentralized control method to achieve power balance for this integrated system because of the difference between power transmission characteristics of parallel and series converter system. For this proposed MG in island mode, a unified distributed control strategy is proposed. With low bandwidth communication, accurate power sharing can be realized by exchanging information between the first converters connected to the bus of adjacent DG strings and between adjacent converters inside each DG string. Because the central controller is not used, the communication pressure of the system is reduced and the reliability is guaranteed. Simulation test has verified the feasibility and validity of the proposed control strategy.
机译:本文提出了一种集成的串联-并联微电网(MG),其中使用一些串联的分布式发电(DG)单元形成DG串,然后DG串为并联类型的公共负载供电。通过这种结构,可以将低压设备集成到MG中,而无需DC-DC升压转换器。它提供了一种更灵活,更有效的方式来形成更高的电压电平MG。但是,由于并联和串联转换器系统的功率传输特性之间存在差异,因此很难找到一种分散控制方法来实现该集成系统的功率平衡。对于该提出的孤岛模式MG,提出了一种统一的分布式控制策略。利用低带宽通信,可以通过在连接到相邻DG串的总线的第一转换器之间以及每个DG串内部的相邻转换器之间交换信息来实现准确的功率共享。由于不使用中央控制器,因此降低了系统的通讯压力,并保证了可靠性。仿真试验验证了所提控制策略的可行性和有效性。

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