首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Travelling wave fault location principle for hybrid multi-terminal LCC-VSC-HVDC transmission line based on R-ECT
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Travelling wave fault location principle for hybrid multi-terminal LCC-VSC-HVDC transmission line based on R-ECT

机译:基于R-ECT的混合式多端LCC-VSC-HVDC输电线路行波故障测距原理

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This paper investigates the fault location issue of hybrid multi-terminal high voltage direct current (HVDC) overhead transmission line based on the line commutated converter (LCC) and voltage source converter (VSC). There exists two issues that should be addressed: (i) the travelling wave (TW) fault location principle's adaptability to multi-terminal network topology and converter structures; (ii) the transfer method of high frequency TW signal. Therefore, a novel TW fault location principle for the hybrid multi-terminal LCC-MMC-HVDC transmission line is proposed based on the Rogowski coli based electronic current transformer (R-ECT). Firstly, the high frequency TW transfer capability of the R-ECT is studied. Secondly, a novel TW fault location principle based on the secondary differential current travelling wave (D-CTW) is proposed. Eventually, in order to verify the high accuracy of the proposed principle, a typical 400 kV hybrid three-terminal LCC-VSC-HVDC transmission system is used for the case study based on PSCAD/EMTDC. Furthermore, its robustness against different fault locations, different fault resistances and different fault types is also investigated.
机译:本文研究了基于线路换向变换器(LCC)和电压源变换器(VSC)的混合式多端高压直流(HVDC)架空输电线路的故障定位问题。存在两个需要解决的问题:(i)行波(TW)故障定位原理对多终端网络拓扑和转换器结构的适应性; (ii)高频TW信号的传输方法。因此,基于基于罗戈夫斯基大肠菌的电子式电流互感器(R-ECT),提出了一种用于混合式多端子LCC-MMC-HVDC输电线路的TW故障定位原理。首先,研究了R-ECT的高频TW传递能力。其次,提出了一种基于二次差动行波(D-CTW)的TW故障定位原理。最终,为了验证所提出原理的高精度,基于PSCAD / EMTDC的案例研究使用了典型的400 kV混合三端LCC-VSC-HVDC输电系统。此外,还研究了其针对不同故障位置,不同故障电阻和不同故障类型的鲁棒性。

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