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Small signal modeling and parameter design of virtual synchronous generator to weak grid

机译:虚拟同步发电机弱电网小信号建模与参数设计

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The virtual synchronous generator (VSG) allows power electronics interfaced distributed generators (DG) actively taking part in the power regulation of distribution network (DN), providing adjustable inertia and damping as well as frequency and voltage support, which is meaningful to facilitate the safe and stable operation of DN. However, the dynamic characteristics of VSG have not yet been discussed when the frequency and amplitude of grid voltage are disturbed. To evaluate the power regulation capabilities of VSG, it is thus necessary to unmask the dynamic characteristics of VSG, especially when it is connected to weak grid. To address this issue, a small signal model of VSG controlled three-phase converter is first deduced. On this basis, the relationships of power responses and grid voltage disturbances are revealed. In order to improve the dynamic performances and reduce coupling effect between active and reactive power regulation, the influence of main parameters involving inertia, damping, voltage regulation coefficient and virtual impedance on dynamic response is analyzed by root locus and the parameter design method is presented. Finally, the Matlab/Simulink simulation and experimental results show the correctness and feasibility of the theoretical analysis presented above.
机译:虚拟同步发电机(VSG)允许电力电子接口分布式发电机(DG)积极参与配电网(DN)的功率调节,提供可调节的惯性和阻尼以及频率和电压支持,这对于促进安全性非常重要。 DN稳定运行。但是,当电网电压的频率和幅度受到干扰时,VSG的动态特性尚未得到讨论。为了评估VSG的功率调节能力,因此有必要揭露VSG的动态特性,尤其是当VSG连接到弱电网时。为了解决这个问题,首先推导了由VSG控制的三相转换器的小信号模型。在此基础上,揭示了功率响应与电网电压扰动的关系。为了提高动态性能,减少有功功率和无功功率调节之间的耦合作用,通过根源分析了惯性,阻尼,电压调节系数和虚拟阻抗等主要参数对动力响应的影响,提出了参数设计方法。最后,Matlab / Simulink仿真和实验结果证明了上述理论分析的正确性和可行性。

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