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A Method to Directly Compute Synchronverter Parameters for Desired Dynamic Response

机译:一种直接计算所需动态响应的同步变频器参数的方法

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This paper proposes a method to directly compute controller parameter values in a synchronverter augmented with a so-called damping correction loop, and in so doing, achieve desired transient and steady-state response. The proposed approach is grounded in a reduced third-order system model that captures pertinent dynamic characteristics of the synchronverter active-power loop (APL), particularly those of the dominant mode. This reduced-order model helps to identify and explain a shortcoming in a previous parameter tuning method. Central to the proposed parameter computation method is to express APL parameters of the original system as closed- form functions of the poles of the reduced-order system. Since the reduced-order model retains dominant-mode dynamic behaviours of the original system, APL parameters can be directly computed according to specified APL dominant mode. Time-domain simulations are provided to validate the accuracy of the reduced-order model and the proposed direct-computation parameter tuning method.
机译:本文提出了一种方法,可以在同步转换器中直接计算控制器参数值,以通过所谓的阻尼校正循环,从而实现所需的瞬态和稳态响应。所提出的方法在减少的三阶系统模型中接地,该模型捕获了同步器有源电源回路(APL)的相关动态特性,特别是主导模式。此缩小阶模型有助于以先前的参数调谐方法识别和解释缺点。所提出的参数计算方法的核心是将原始系统的APL参数表达为缩小订单系统的极点的闭合功能。由于阶阶模型保留了原始系统的主导模式动态行为,因此可以根据指定的APL主导模式直接计算APL参数。提供时域模拟以验证阶阶模型的准确性和所提出的直接计算参数调谐方法。

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