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Adaptive Control of Power Electronics Load Considering User Intention in Islanded Microgrid

机译:考虑到岛状微电网的用户意图,电力电子负荷的自适应控制

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Load control and management is a significant component for a microgrid with intermittent renewable power. In this paper, application of the flexible power electronics loads (FPELs) to balance the distributed power generations and loads demand in islanded microgrid is discussed. An adaptive control considering the user intention is proposed to make FPELs actively participate in the supply and demand balance of microgrid. In the proposed control, the frequency of microgrid is used as a control variable which indicates the balance between supply and demand. The multi-threshold frequency values are preset according the FPELs intention. The FPELs can regular their consumptions according to the microgrid operation and the user's intention. It can make the FPELs to automatically participate into the supply and demand balance and maintain the FPELs in proper operation. With the user intention, it can reduce the influence on load operation. In the control, the FPELs can automatically follow the microgrid operation without communication. Consequently, communication links and energy storage reservation can be reduced. Simulation studies are conducted via Matlab and the results show the effectiveness of the proposed control scheme.
机译:负载控制和管理是具有间歇可再生能力的微电网的重要组成部分。本文讨论了柔性电力电子负载(FPELs)的应用来平衡分布式电力和岛状微电网中的负载需求。考虑用户意图的自适应控制提出使FPELS积极参与微电网的供需平衡。在所提出的控制中,MicroGrid的频率用作控制变量,表示供需之间的平衡。根据FPELS意图预设多阈值频率值。根据微电网运行和用户的意图,FPELS可以定期定期其消耗。它可以使FPELS自动参与供应和需求平衡并在适当的操作中保持FPELS。通过用户意图,它可以减少对负载操作的影响。在控制中,FPEL可以自动遵循微电网操作而无需通信。因此,可以减少通信链路和能量存储预留。仿真研究通过MATLAB进行,结果表明了所提出的控制方案的有效性。

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