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Stabilizing the VSI response in microgrids via novel PI controllers

机译:通过新型PI控制器稳定微电网中的VSI响应

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摘要

In distributed generation and modern smart grids, the voltage source inverter (VSI) is commonly used as a basic interface between the different power sources and devices. The control capabilities of the VSI are very essential in transforming the passive distribution network into an active one. In this frame, the modeling, control and stability analysis of a VSI, standing as an interface between a dc current source and a three-phase voltage grid, is investigated. Adopting the mean value model of the VSI in the synchronously rotating d-q reference frame, a pair of simple cascaded mode controllers are proposed to locally regulate the reactive power and the dc voltage, respectively. As shown in the paper, stable inner-loop current controllers can be of simple proportional-integral (PI) form with damping, which are fully independent from the system parameters; the outer-loop voltage and power controllers are also of simple PI type. Hence the paper focuses on presenting the detailed nonlinear analysis needed for proving stability of the VSI with the proposed controllers incorporated. Finally, the theoretical results are further verified by extended simulations.
机译:在分布式发电和现代智能电网中,电压源逆变器(VSI)通常用作不同电源和设备之间的基本接口。 VSI的控制功能对于将被动配电网络转变为主动配电网络至关重要。在此框架中,研究了作为直流电流源和三相电压网格之间接口的VSI的建模,控制和稳定性分析。通过在同步旋转的d-q参考系中采用VSI的平均值模型,提出了一对简单的级联模式控制器,分别用于本地调节无功功率和直流电压。如本文所示,稳定的内环电流控制器可以采用带阻尼的简单比例积分(PI)形式,并且完全独立于系统参数。外环电压和功率控制器也是简单的PI类型。因此,本文着重介绍了结合所提出的控制器来证明VSI稳定性所需的详细非线性分析。最后,通过扩展仿真进一步验证了理论结果。

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