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Fault line selection in cooperation with multi-mode grounding control for the floating nuclear power plant grid

机译:浮动核电站电网与多模式接地控制合作的故障线选择

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The Floating nuclear power plant grid is composed of power generation, in-station power supply and external power delivery. To ensure the safety of the nuclear island, the in-station system adopts a special power supply mode, while the external power supply needs to be adapted to different types of external systems. Because of frequent single phase-ground faults and various fault forms, the fault line selection protection should be accurate, sensitive and adaptive. This paper presents a fault line selection method in cooperation with multi-mode grounding control. Based on the maximum united energy entropy ratio (MUEER), the optimal wavelet basis function and decomposition scale are adaptively chosen, while the fault line is selected by wavelet transform modulus maxima (WTMM). For high-impedance faults (HIFs), to enlarge the fault feature, the system grounding mode can be switched by the multi-mode grounding control. Based on the characteristic of HIFs, the fault line can be selected by comparing phase differences of zero-sequence current mutation and fault phase voltage mutation before and after the fault. Simulation results using MATLAB/Simulink show the effectiveness of the proposed method in solving the protection problems.
机译:浮动核电站网格由发电,车站电源和外部电力输送组成。为确保核岛的安全性,车载系统采用特殊电源模式,外部电源需要适应不同类型的外部系统。由于单相接口频繁和各种故障形式,故障线路选择保护应准确,敏感和自适应。本文介绍了具有多模式接地控制的故障线选择方法。基于最大联合能源熵率(Mueer),自适应地选择最佳小波基函数和分解刻度,而通过小波变换模数Maxima(WTMM)选择故障线。对于高阻抗故障(HIF),为了放大故障特征,可以通过多模式接地控制来切换系统接地模式。基于HIF的特性,可以通过比较故障前后和之后的零序电流突变和故障相位电压突变的相位差来选择故障线。使用MATLAB / SIMULINK的仿真结果显示了提出方法解决保护问题的有效性。

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