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Small-signal modelling and parametric sensitivity of a Virtual Synchronous Machine

机译:虚拟同步机的小信号建模和参数敏感性

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The Virtual Synchronous Machine (VSM) concept is emerging as a flexible approach for controlling power electronic converters in grid-connected as well as stand-alone or microgrid applications. Several VSM implementations have been proposed, with the emulation of inertia and damping of a traditional Synchronous Machine (SM) as their common feature. This paper investigates a VSM implementation based on a Voltage Source Converter (VSC), where a virtual swing equation provides the phase reference for cascaded voltage and current control in a synchronous reference frame. The control system includes also a virtual impedance and an outer loop frequency droop controller which is functionally equivalent to the governor of a traditional SM. A linearized small-signal model of the VSM including the converter and its grid side filter, the control system and a simple grid equivalent, is developed and verified by time-domain simulations of a nonlinear system model. The small-signal model is used to identify the critical modes of the system and to investigate their parametric sensitivity.
机译:虚拟同步机(VSM)概念正在作为一种灵活的方法出现,用于控制并网以及独立或微电网应用中的电力电子转换器。已经提出了几种VSM实现方式,它们以惯性和传统同步电机(SM)的阻尼仿真为共同特征。本文研究了基于电压源转换器(VSC)的VSM实现,​​其中虚拟摆幅方程式为同步参考系中的级联电压和电流控制提供了相位参考。该控制系统还包括虚拟阻抗和外环频率下降控制器,其功能上等效于传统SM的调速器。通过非线性系统模型的时域仿真,开发并验证了VSM的线性化小信号模型,该模型包括转换器及其并网滤波器,控制系统和简单等价电网。小信号模型用于识别系统的关键模式并研究其参数敏感性。

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