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Small-Signal Modeling and Parameters Design for Virtual Synchronous Generators

机译:虚拟同步发电机的小信号建模与参数设计

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摘要

The concept of the virtual synchronous generator (VSG) is emerging as an attractive solution for controlling the grid-connected inverter when the renewable energy has a high penetration level into the grid. This paper focuses on the small-signal modeling and parameters design of the power loop of the VSG, and points out that the bandwidth of the power loop should be far less than twice the line frequency for the purpose of avoiding the VSG output voltage to be severely distorted. Consequently, the line-frequency-averaged small-signal model of the VSG is derived for system analysis and parameters design. Based on the model, the decoupling conditions between the active power loops (APLs) and the reactive power loops (RPLs) of the VSG are given. Finally, a step-by-step parameters design method is proposed to facilitate the design of the control parameters of the VSG. A 10-kVA prototype is built and tested in the laboratory, and the experimental results are given to verify the effectiveness of the theoretical analysis and the proposed parameters design method.
机译:当可再生能源对电网的渗透率很高时,虚拟同步发电机(VSG)的概念正在成为一种有吸引力的解决方案,用于控制并网逆变器。本文着重于VSG电源环路的小信号建模和参数设计,并指出电源环路的带宽应远小于线路频率的两倍,以避免VSG输出电压过高。严重扭曲。因此,导出了VSG的行频平均小信号模型,用于系统分析和参数设计。基于该模型,给出了VSG的有功功率环路(APL)和无功功率环路(RPL)之间的解耦条件。最后,提出了一种逐步设计参数的方法,以利于VSG控制参数的设计。建立了一个10 kVA的原型并在实验室中进行了测试,并给出了实验结果,以验证理论分析和所提出的参数设计方法的有效性。

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