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Conservation Voltage Reduction for Islanded DC Microgrids Based on Distributed Cooperative Control Scheme

机译:基于分布式协同控制方案的孤岛直流微电网节能降压

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This paper presents a cooperative control strategy to reduce the power consumption based on the concept of conservation voltage reduction (CVR) in an islanded DC microgrid. It is expected that each islanded DC microgrid supplies its loads autonomously; however, owing to the unexpected power demand, it is possible that the microgrid experiences power deficiency. In conventional power systems, the CVR is one of the cheapest technologies for demand-side management that the utilities lower the voltage of end-use loads within the permissible range in hope that the power demand is reduced. However, in the islanded DC microgrids, the employment of CVR for demand-side management has not received sufficient attention so far. Therefore, this paper presents a CVR based distributed cooperative control scheme which, carries out demand-side management by voltage regulation. The efficiency of the proposed control scheme in comparison to the well-known hierarchical distributed cooperative control is illustrated. A complete set of simulation studies is carried out in PLECS to verify the effectiveness of the proposed control scheme.
机译:本文提出了一种基于孤岛直流微电网中的节能降压(CVR)概念的降低功耗的协作控制策略。预计每个孤岛式直流微电网将自动提供负载。但是,由于意外的电力需求,微电网可能会出现电力不足的情况。在传统的电源系统中,CVR是用于需求侧管理的最便宜的技术之一,公用事业公司将最终使用负载的电压降低到允许范围内,以希望减少电力需求。但是,在孤岛式直流微电网中,到目前为止,对于需求侧管理使用CVR的关注还不够。因此,本文提出了一种基于CVR的分布式协同控制方案,该方案通过电压调节进行需求侧管理。与公知的分层分布式协作控制相比,所提出的控制方案的效率得到了说明。在PLECS中进行了一套完整的仿真研究,以验证所提出的控制方案的有效性。

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