ADPSS Based Short-circuit Current Calculation Method of MMC

Xiao Yu, Shanshan Wang, Bing Zhao, Zhida Su, Hongfu Wang, Hongying Peng
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Abstract

Modular multilevel converter (MMC) has broad application prospects in new energy transmission. When a MMC is connected to an active AC grid, it is necessary to calculate the three-phase symmetrical short-circuit current contribution of MMC to ensure the safety of power system. The existing method used in actual engineering projects consider MMC as a current source of which the amplitude is the current limiting amplitude of current limiter. It is safe but has too much margin to be accurate. This paper proposes a new method to calculate short-circuit current that can be used in actual engineering project. This paper analyses the characteristics of MMC short-circuit current first, and proposes the key factors affect short-circuit current contributed by MMC during an actual operating condition. On this basis, simulation trials on advanced digital power system simulator (ADPSS) are designed to get the characteristic curves of short-circuit current which can be used to calculate short-circuit current in actual operation of the engineering project. Finally, this paper uses Zhangbei MMC-HVDC project as an example to apply the new method and show the effectiveness and superiority of the method proposed by this paper.
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基于ADPSS的MMC短路电流计算方法
模块化多电平变换器(MMC)在新能源传输中具有广阔的应用前景。当MMC与有源交流电网连接时,需要计算MMC的三相对称短路电流贡献,以保证电力系统的安全运行。实际工程中采用的现有方法将MMC作为电流源,其幅值为限流器的限流幅值。它是安全的,但有太大的余地,不准确。本文提出了一种新的短路电流计算方法,可用于实际工程。本文首先分析了MMC短路电流的特点,提出了在实际运行状态下影响MMC短路电流的关键因素。在此基础上,设计了先进的数字电力系统模拟器(ADPSS)的仿真试验,得到了短路电流特性曲线,可用于工程项目实际运行中短路电流的计算。最后,以张北MMC-HVDC工程为例,对新方法进行了应用,验证了该方法的有效性和优越性。
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