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DC-Bus Voltage Control Stability Affected by AC-Bus Voltage Control in VSCs Connected to Weak AC Grids

机译:连接到弱交流电网的VSC中的交流总线电压控制会影响直流总线电压控制的稳定性

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With the wide application of voltage source converters (VSCs) in power system, dc-bus voltage control instabilities increasingly occurred in practical conditions, especially in weak ac grid, which poses challenges on stability and security of power converters applications. This paper aims to give physical insights into the stability of dc-bus voltage control affected by ac-bus voltage control in VSC connected to weak grid. The concepts of damping and restoring components are developed for dc-bus voltage to describe the stability of dc-bus voltage control. The impact of ac-bus voltage control on dc-bus voltage control stability can be revealed by investigating the impact of ac-bus voltage control on damping and restoring components essentially. Furthermore, the detailed analysis for the impact of ac-bus voltage control on damping and restoring components is presented considering varied ac system strengths, operating points, and ac-bus voltage control parameters. The simulation results from 1.5-MW full-capacity wind power generation system are demonstrated which conform well to the analysis. Finally, the experimental results validate the analysis.
机译:随着电压源转换器(VSC)在电力系统中的广泛应用,在实际情况下,尤其是在弱交流电网中,直流总线电压控制的不稳定性越来越多,这给功率转换器应用的稳定性和安全性带来了挑战。本文旨在对连接到弱电网的VSC中受交流总线电压控制影响的直流总线电压控制的稳定性提供物理见解。针对直流母线电压开发了阻尼和恢复组件的概念,以描述直流母线电压控制的稳定性。交流母线电压控制对直流母线电压控制稳定性的影响可以通过研究交流母线电压控制对阻尼和恢复元件的影响来揭示。此外,针对交流母线电压控制对阻尼和恢复组件的影响进行了详细分析,其中考虑了各种交流系统强度,工作点和交流母线电压控制参数。对1.5兆瓦风力发电系统的仿真结果进行了验证。最后,实验结果验证了分析结果。

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