VSG Transient Power Angle Stabilization Strategy Considering Current Limiting

Xiao Han, C. Deng, L. Y. Dai, M. Zheng, Z. Ling
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Abstract

Virtual synchronous generators (VSGs) can imitate the output characteristics of traditional synchronous generators, which means that when the frequency or voltage of the system fluctuates, the VSG can use the inertia and damping characteristics to smooth the fluctuations as much as possible. VSG also has transient stability problems under large disturbances, but its overcurrent capability is far less than that of traditional synchronous generators. Therefore, it is necessary to limit the overcurrent while maintaining the transient power angle stability of the system. Most of the existing studies analyze the overcurrent limit and transient power angle stability respectively, but the control strategies considered both are also worthy of attention and research. This paper firstly analyzes the current limiting control of VSG and its influence on the virtual power angle characteristic through the vector diagram. Then, the transient power angle stability of the system is studied under the condition of current saturation through the power angle characteristic curve. On this basis, a transient power angle stabilization method is proposed to keep the virtual power angle unchanged at the initial steady state value while limiting overcurrent. Finally, the rationality of the proposed strategy is verified by simulations on MATLAB/Simulink.
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考虑限流的VSG暂态功率角稳定策略
虚拟同步发电机(VSGs)可以模仿传统同步发电机的输出特性,即当系统的频率或电压波动时,VSG可以利用惯性和阻尼特性尽可能地平滑波动。VSG在大扰动下也存在暂态稳定性问题,但其过流能力远远小于传统同步发电机。因此,在保持系统暂态功率角稳定的同时,必须限制过流。现有的研究大多分别分析过流限制和暂态功率角稳定性,但同时考虑两者的控制策略也值得关注和研究。本文首先通过矢量图分析了VSG的限流控制及其对虚功率角特性的影响。然后,通过功率角特性曲线研究了电流饱和条件下系统的暂态功率角稳定性。在此基础上,提出了一种暂态功率角稳定方法,使虚功率角保持在初始稳态值不变,同时限制过流。最后,通过MATLAB/Simulink仿真验证了所提策略的合理性。
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