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Transient Damping Method for Improving the Synchronization Stability of Virtual Synchronous Generators

机译:用于提高虚拟同步发电机同步稳定性的瞬态阻尼方法

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摘要

The virtual synchronous generator (VSG) was proposed to emulate a synchronous machine's dynamics when integrating power electronic converter-based distributed energy resources to the power grid. However, the VSG's synchronization stability during grid faults is not fully explored. The underlying mechanism of loss of synchronization still needs to be further revealed due to VSG's nonlinear characteristics. In this article, a step-by-step analytical method based on combining the linear and nonlinear models is proposed to analyze VSG's dynamic behaviors during a large disturbance. The relationship between the linear and nonlinear models is first brought to light, showing that the linear model is suitable for qualitative analysis to give an intuitive physical insight. Simultaneously, the latter is adopted for quantitative analysis to assess stability after a grid fault. Moreover, to avoid the conflict of the synchronization stability and the inertia response, a transient damping method is added in the active power control loop, which can simultaneously improve the synchronization stability and frequency stability. Design guidelines are also proposed to identify the parameter of the transient damping with different inertia requirements. Finally, the experimental results verify the analytical method and the theoretical analysis.
机译:建议在将基于电力转换器的分布式能量资源集成到电网时,提出虚拟同步发电机(VSG)以模拟同步机器的动态。但是,网格故障期间VSG的同步稳定性未得到完全探索。由于VSG的非线性特征,需要进一步揭示同步损失的潜在机制。在本文中,提出了一种基于组合线性和非线性模型的逐步分析方法,以分析大扰动期间VSG的动态行为。首先将线性和非线性模型之间的关系光明,表明线性模型适用于定性分析,以提供直观的身体洞察力。同时,采用后者进行定量分析,以评估网格故障后的稳定性。此外,为了避免同步稳定性和惯性响应的冲突,在有源功率控制回路中添加了瞬态阻尼方法,其可以同时提高同步稳定性和频率稳定性。还提出了设计指南,以确定具有不同惯性要求的瞬态阻尼参数。最后,实验结果验证了分析方法和理论分析。

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