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Decentralized Control of Voltage Source Converters in Microgrids Based on the Application of Instantaneous Power Theory

机译:基于瞬时功率理论的微电网电压源变换器的分散控制

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摘要

In this paper, a new strategy to control microgrids highly penetrated by voltage source converters (VSCs) is proposed. The strategy is based on the instantaneous measurements and calculations of voltages and currents and the application of instantaneous power theory. This approach employs each VSC along with an filter as a current source. The grid parameters are not known to the controller, only the filter inductance and capacitance. The approach characterizes a theoretical methodology to define a grid status parameter that provides multiple alternatives to operate the VSC autonomously. Moreover, one of those alternatives is sharing load among VSCs by regulating the voltage of the local connection bus. This grid status parameter is an external voltage contribution vector defined by the operation of the other VSCs in the microgrid. Because of the definition of this parameter, frequency manipulation is not employed as a communication link between VSCs, avoiding perturbation to the grid stability. The approach provides an approximation of the equivalent impedance of the system seen from the filter output. The load-sharing scheme under the proposed strategy is fully described. An experimental validation is performed in order to test the proposed approach for load sharing between three VSCs and the inclusion of nonlinear load.
机译:本文提出了一种新的策略来控制电压源转换器(VSC)高度渗透的微电网。该策略基于电压和电流的瞬时测量和计算以及瞬时功率理论的应用。这种方法采用每个VSC以及一个滤波器作为电流源。控制器不知道电网参数,只有滤波器的电感和电容是未知的。该方法表征了定义网格状态参数的理论方法,该参数提供了多种选择来自主运行VSC。此外,这些替代方案之一是通过调节本地连接总线的电压在VSC之间分担负载。该电网状态参数是由微电网中其他VSC的运行定义的外部电压贡献矢量。由于定义了此参数,因此未将频率操作用作VSC之间的通信链接,从而避免了对电网稳定性的干扰。从滤波器输出看,该方法提供了系统等效阻抗的近似值。完整描述了所提出策略下的负载分担方案。为了验证所提出的在三个VSC之间进行负载分担和包含非线性负载的方法,进行了实验验证。

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