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Voltage-frequency control of an islanded microgrid using the intrinsic droop characteristics of resonant current regulators

机译:使用谐振电流调节器的固有下垂特性的岛状微电网的电压 - 频率控制

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The Distributed Generators (DGs) of an islanded microgrid must be carefully controlled to regulate voltage and frequency, and to share power evenly between the DG sources. This is normally achieved by operating the microgrid Voltage Source Inverters (VSIs) in voltage controlled mode, so that the microgrid voltages and frequency can be explicitly regulated. However, this results in the loss of direct control of the VSI current, and potentially introduces the need for communication between DG units to maintain robust coordination between DG sources. This paper presents a new approach for islanded microgrid operation, where all VSIs are operated in current regulated mode. By taking advantage of the hitherto unrecognised intrinsic droop characteristic of a PR current regulated VSI, frequency regulation, voltage regulation and power sharing can be achieved across the islanded microgrid without requiring either explicit external control or direct communication between the DG units. Simulation and experimental results are presented to verify the performance of the new approach.
机译:必须仔细控制岛状微电网的分布式发电机(DGS)以调节电压和频率,并在DG源之间均匀地共用电力。这通常通过在电压控制模式下操作微电压电压源逆变器(VSIS)来实现,从而可以明确调节微电压电压和频率。然而,这导致丧失VSI电流的直接控制,并且可能介绍了DG单元之间的通信的需求,以保持DG源之间的鲁棒协调。本文介绍了岛状微电网运行的新方法,其中所有VSI都以当前调节模式运行。通过利用PR电流调节的VSI的迄今未被识别的内在下垂特性,频率调节,电压调节和功率共享可以通过岛状的微电网实现,而无需明确的外部控制或DG单元之间的直接通信。提出了仿真和实验结果以验证新方法的性能。

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