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Seamless Transition of Microgrids Operation From Grid-Connected to Islanded Mode

机译:从网格连接到岛屿模式的微电网操作的无缝转换

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One of the main features of Microgrids is the ability to operate in both grid-connected mode and islanding mode. In each mode of operation, distributed energy resources (DERs) can be operated under grid-forming or grid-following control strategies. In grid-connected mode, DERs usually work under grid-following control strategy, while at least one of the DERs must operate in grid-forming strategy in islanding mode. A microgrid may experience remarkable fluctuations in voltage and current due to an unintentional islanding event. To achieve a smooth transition to islanding mode and mitigate disturbance effect, this paper proposes a control strategy includes a) a linear voltage controller with capacitor current feedback as an input to the voltage controller and output current feedforward as an input to current controller, and b) modified droop control to emulate the inertia response of a synchronous generator. The proposed controller can suppress voltage, current and frequency fluctuations and also guarantee a smooth transition. A small signal analysis of the proposed control strategy is developed to design its coefficients as well as the destabilizing effect of constant power load (CPL). Experimental results are provided to verify the effectiveness of the proposed control strategy.
机译:微电网的主要特征之一是在网格连接模式和岛状模式下操作的能力。在每种操作模式中,分布式能源资源(DERS)可以在网格形成或电网后控制策略下运行。在网格连接模式中,DER通常在网格之后的控制策略下工作,而其中至少一个DER必须在岛屿模式下以网格形成策略运行。由于无意的岛地事件,微电网可能会在电压和电流中经历显着的波动。为了实现对岛屿模式的平滑过渡和减轻干扰效果,提出了一种控制策略包括a)带电容器电流反馈的线性电压控制器作为电压控制器的输入,作为输入到电流控制器的输入,以及B. )修改的下垂控制以模拟同步发电机的惯性响应。所提出的控制器可以抑制电压,电流和频率波动,并保证平滑过渡。开发了对所提出的控制策略的小信号分析,以设计其系数以及恒定功率负荷(CPL)的稳定效果。提供实验结果以验证提出的控制策略的有效性。

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