基于能量变化率的直流输电系统暂态稳定分析方法

Z. Cao, Bingtuan Gao, Xiaolin Liu, Xingang Wang, Zhuan Zhou, Feng Zhang
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引用次数: 0

摘要

在换相故障恢复过程中,由于直流调节速度和交流电压恢复速率的相互作用,电流指令反复进入和退出电压依赖电流限幅器(VDCOL)控制,导致直流电源连续振荡。针对这一问题,提出了一种基于能量变化率的VDCOL控制暂态稳定性分析方法。首先,分析了换相故障恢复过程中的VDCOL控制,构建了接收端电网电压恢复方程;其次,根据接收端电网模型和电压恢复方程,建立能量函数,通过分析直流端(VDCOL控制中)的能量变化率等因素,揭示系统在换相故障恢复过程中的暂态稳定性。最后,通过建立换相失效与恢复仿真,分析了接收端电网的暂态能量趋势,仿真结果验证了所提暂态稳定分析方法的有效性。
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Energy Variation Rate-Based Transient Stability Analysis Method for VDCOL Control of HVDC Transmission System
During the recovery process of commutation failure, the current command repeatedly enters and exits the voltage dependent current order limiter (VDCOL) control because of the interaction between the DC regulation speed and the AC voltage recovery rate, causing the DC power to oscillate continuously. Concerning this problem, a transient stability analysis method of VDCOL control based on energy variation rate is proposed. Firstly, the paper analyzes the VDCOL control during the recovery process of commutation failure and constructs the voltage recovery equation of the receiving-end power grid. Secondly, according to the model of receiving-end power grid and voltage recovery equation, the energy function is established, and the transient stability of the system during the recovery process of commutation failure is revealed based on the analysis of energy variation rate of DC terminal (in VDCOL control) and other components. Finally, the transient energy trend of the receiving-end power grid is analyzed by building a commutation failure and recovery simulation, and the simulation results illustrate the effectiveness of the proposed transient stability analysis method.
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