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Voltage stability analysis of power systems with a large number of non-synchronous machine sources connected

机译:具有大量非同步机源的电力系统电压稳定性分析

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Compared with synchronous generators, the steady-state and dynamic characteristics of non-synchronous machine sources represented by line commutated converters (LCC) and voltage source converters (VSC) are quite different. The voltage stability of power systems will be changed when a large number of non-synchronous machine sources (NSMS) are connected. The voltage stability of power systems with NSMSs connected is analyzed in this paper. Firstly, based on the relationship between the Jacobian matrix singularity and the small disturbance voltage stability (SDVS), the impact of NSMSs on the SDVS of active systems is analyzed. Secondly, whether there is a reasonable voltage solution in the transient process is taken as a large-disturbance voltage stability (LDVS) criterion, the impact of NSMSs on the LDVS of active systems is studied. Thirdly, for a special scenario where the VSC supplies power to a passive system, the requirements of the voltage stability on load types and VSC parameters are discussed. Finally, based on the Power System Simulator/Engineering (PSS/E), simulations are carried out in the Shanghai power system and a passive power system, and the theoretical analysis results are verified.
机译:与同步发电机相比,由线路换向转换器(LCC)和电压源转换器(VSC)表示的非同步机源的稳态和动态特性非常不同。当连接大量非同步机源(NSMS)时,电源系统的电压稳定性将改变。本文分析了连接有NSMSS的电力系统的电压稳定性。首先,基于Jacobian矩阵奇点和小扰动电压稳定性(SDVS)之间的关系,分析了NSMS对活性系统SDV的影响。其次,瞬态过程中是否存在合理的电压解被作为大扰动电压稳定性(LDVS)标准,研究了NSMS对有源系统LDV的影响。第三,对于VSC为被动系统供电的特殊场景,讨论了负载类型和VSC参数的电压稳定性的要求。最后,基于电力系统模拟器/工程(PSS / E),在上海电力系统和无源电力系统中进行了模拟,验证了理论分析结果。

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