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首页> 外文期刊>Smart Grid, IEEE Transactions on >Optimal, Nonlinear, and Distributed Designs of Droop Controls for DC Microgrids
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Optimal, Nonlinear, and Distributed Designs of Droop Controls for DC Microgrids

机译:直流微电网下垂控制的最优,非线性和分布式设计

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摘要

In this paper, the problem of optimal voltage and power regulation is formulated for distributed generators (DGs) in DC microgrids. It is shown that the resulting control is optimal but would require the full information of the microgrid. Relaxation of information requirement reduces the optimal control into several controls including the conventional droop control. The general setting of a DC microgrid equipped with local sensing/communication network calls for the design and implementation of a cooperative droop control that uses the available local information and coordinates voltage control in a distributed manner. The proposed cooperative droop control is shown to include other controls as special cases, its performance is superior to the conventional droop control, and it is robust with respect to uncertain changes in both distribution network and sensing/communication network. These features make the proposed control an effective scheme for operating a DC microgrid with intermittent and distributed generation.
机译:<?Pub Dtl?>本文针对直流微电网中的分布式发电机(DG)提出了最佳电压和功率调节问题。结果表明,所得到的控制是最佳的,但是将需要微电网的全部信息。信息需求的放宽将最佳控制减少到包括常规下垂控制在内的几个控制中。配备有本地感应/通信网络的DC微电网的一般设置要求设计和实现协作下垂控制,该控制使用可用的本地信息并以分布式方式协调电压控制。所提出的协同下垂控制被显示为包括特殊情况下的其他控制,其性能优于传统的下垂控制,并且对于配电网络和传感/通信网络中的不确定变化均具有鲁棒性。这些特征使所提出的控制成为一种用于间歇式和分布式发电的直流微电网的有效方案。

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