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Coordinate control of distributed generation and active power electronics loads in islanding microgrid

机译:孤岛微电网中分布式发电和有功电子负载的协调控制

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In islanding microgrid, the distributed generation (DG) units should take over the microgrid and meet the power demand of loads. Due to the randomness and capacity limitation of DG units, the islanding microgrid may face overload challenge with load increasing. The islanding microgrid need massive energy storage system for power reserve or load shedding to maintain microgrid stable. However, this is not ideal solution due to the high construction cost and reliability of power supply. This paper proposes a coordinate control scheme for DG units and active power electronics loads to maintain supply-demand balance in islanding microgrid. A flexible load control is proposed to control power electronics load to control its power consumption, which is implemented using converter control variables measured locally. Through the flexible load control strategy, supply-demand balance can be realized automatically, and the system reliability can be maintained and enhanced. As a consequence, the constructions of massive energy storage system and communication system can be saved. Matlab simulation results are shown the effectiveness of the proposed control strategy.
机译:在孤岛微电网中,分布式发电(DG)单元应接管微电网并满足负载的电力需求。由于DG装置的随机性和容量限制,随着负载的增加,孤岛微电网可能会面临过载挑战。孤岛微电网需要大量的能量存储系统来进行动力储备或减载,以保持微电网的稳定。然而,由于高昂的建造成本和电源的可靠性,这不是理想的解决方案。本文提出了一种分布式控制单元和有功功率电子负载的协调控制方案,以维持孤岛微电网的供需平衡。提出了一种灵活的负载控制来控制电力电子负载以控制其功率消耗,这是使用局部测量的转换器控制变量来实现的。通过灵活的负载控制策略,可以自动实现供需平衡,并可以维持和增强系统的可靠性。结果,可以节省大量的能量存储系统和通信系统的结构。 Matlab仿真结果表明了所提出控制策略的有效性。

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