Study on Energy Stress of DC Circuit Breakers after Pole-to-pole Fault of VSC-HVDC Grid

Zheng Wei, Yong Yang, M. Li, Jichao Fan, Yan Shi, Weibing Wen, Jialong Wang
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Abstract

DC circuit breaker (DCB) is the core equipment of high voltage DC (HVDC) grid based on voltage source converter (VSC). However DCB absorbs huge energy by metal oxide arrester (MOA) in it when breaking short circuit current. The overlarge energy will easily result in damage of MOA and badly limited the application of DCB. To solve this problem, this paper studies the mechanism of MOA of DCB absorbing energy after the most severe fault, the pole-to-pole fault, of VSC-HVDC grid. The theoretical calculation method of MOA energy stress of DCB is presented. A new protection strategy is provided to suppress MOA energy stress without adding any extra equipment. The actual 4-side VSC-HVDC grid is modelled and simulated based on PSCAD/EMTDC to verify the theoretical analysis results. The calculation results show that compared with the original strategy, the MOA energy stress of DCB can be reduced from 254.5MJ to 145.6MJ by using the new strategy.
直流直流电网极对极故障后直流断路器能量应力的研究
直流断路器是基于电压源变换器(VSC)的高压直流电网的核心设备。但DCB在开断短路电流时,由于其内部的金属氧化物避雷器(MOA)的存在,会吸收大量的能量。过大的能量容易造成MOA的损坏,严重限制了DCB的应用。为了解决这一问题,本文研究了直流电网最严重故障(极对极故障)后DCB吸收能量的MOA机理。提出了DCB MOA能量应力的理论计算方法。提供了一种新的保护策略,可以在不增加任何额外设备的情况下抑制MOA能量应力。最后,基于PSCAD/EMTDC对实际的4侧VSC-HVDC电网进行了建模和仿真,验证了理论分析结果。计算结果表明,与原策略相比,新策略可将DCB的MOA能量应力从254.5MJ降低到145.6MJ。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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