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Voltage dynamics of current control time-scale in a VSC-connected weak grid

机译:VSC连接弱电网中电流控制时间刻度的电压动力学

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摘要

Summary form only given. Voltage problems are challenging in modern power systems with a high penetration of renewables integrated via power electronics. This paper extends the transient time-scale classification to identify voltage dynamics in modern power systems. Voltage dynamics in the current control time-scale is firstly proposed and then the mechanism of terminal voltage change is elaborated. After that the significant influences of the voltage source converter (VSC), current control (CC) loop and voltage feed forward (VFF) on the voltage dynamics in the current control time-scale are discussed. The VSC current control loop provides positive damping on the terminal voltage, while the VFF scheme results in an additional loop that deteriorates terminal voltage dynamic performance and stability. In addition, a sensitivity analysis was carried out to investigate the influence of critical parameters on stability. Finally, simulation results of a current-controlled VSC attached to different strength of AC grids (including a weak grid) are presented to validate the phenomenon and the influencing factors of voltage dynamics in the current control time-scale.
机译:摘要表格仅给出。电压问题在现代电力系统方面具有挑战性,具有通过电力电子集成的可再生能源的高渗透。本文扩展了瞬态时间尺度分类,以识别现代电力系统中的电压动态。首先提出了电流控制时间刻度的电压动力学,然后阐述了终端电压变化的机制。之后,讨论了电压源转换器(VSC),电流控制(CC)环路和电压向前(VFF)在电流控制时间级中的电压动力学上的重大影响。 VSC电流控制回路在终端电压上提供正阻尼,而VFF方案导致额外的环路劣化端子电压动态性能和稳定性。此外,对临界参数对稳定性的影响进行了敏感性分析。最后,提出了连接到AC电网(包括弱电网)不同强度的电流控制VSC的仿真结果以验证当前控制时间尺度中电压动力学的现象和影响因素。

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