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Impedance and Damping Characteristics of Grid-Connected VSCs With Power Synchronization Control Strategy

机译:具有功率同步控制策略的并网VSC的阻抗和阻尼特性

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摘要

Modeling and analysis of the output impedance of a grid-connected voltage-sourced converter (VSC)-based system under the recently-developed power synchronization control topology is presented in this paper. The impact of impedance passivity on subsynchronous damping profile of an electrically-nearby synchronous generator is then characterized. The impacts of key factors such as control modes and control parameter are addressed. A comparison with the standard vector control strategy is also presented. The results reveal that under this type of control, a VSC does not have negative impact on sub-synchronous dynamics; on the contrary, it has a positive impact, compared with commonly used vector current control where the latter has a potential to degrade the system damping. Time-domain simulation results are presented to validate the theoretical analysis.
机译:本文介绍了在最近开发的功率同步控制拓扑下,基于并网电压源转换器(VSC)的系统的输出阻抗的建模和分析。然后表征阻抗无源性对电附近的同步发电机的次同步阻尼曲线的影响。解决了诸如控制模式和控制参数等关键因素的影响。还提出了与标准矢量控制策略的比较。结果表明,在这种控制方式下,VSC不会对次同步动态产生负面影响。相反,与常用的矢量电流控制相比,它具有积极的影响,后者的矢量电流控制可能会降低系统阻尼。给出了时域仿真结果以验证理论分析。

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