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The Influence of the Combination-type Grounding Method on the Voltage-injected Grounding Protection

机译:组合式接地方式对电压注入接地保护的影响

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A combination-type grounding method, which combines with some advantages of resonant grounding method and is able to reduce the ground fault current, is adopted or will be adopted for large-sized generators, such as hydro-generators or nuclear power generators. In this method, an inductor is installed in parallel with the load resistor at LV-side of the neutral grounding transformer (NGT). In this paper, a digital simulation system with quasi-distributed capacitance model is established by using MATLAB SIMULINK for studying stator ground fault and voltage-injected grounding fault protection. The same algorithm as protection device is used. Four ground fault protection schemes, which one is using conventional high-resistance grounding and other three are using combination-type grounding, are designed and the simulations are carried out on an example for a large-sized generator in China. By comparing the analysis, the influence of the combination-type grounding method on the voltage-injected grounding protection is studied. The results show that the parallel inductor can worsen the measurement results of ground fault resistance. And if the parallel inductor is installed on HV-side of the NGT, it is best to the voltage-injected grounding protection, however, it will increase equipment cost. With the range of 10A-25A of ground fault current limitation, the greater the detuning degree, the better the measurement of ground fault resistance.
机译:结合了谐振接地方法的一些优点并且能够减小接地故障电流的组合型接地方法已经被采用或将被用于大型发电机,例如水力发电机或核能发电机。在这种方法中,电感器与负载电阻并联安装在中性点接地变压器(NGT)的LV侧。本文利用MATLAB SIMULINK建立了一个具有准分布电容模型的数字仿真系统,以研究定子接地故障和电压注入接地故障的保护。使用与保护设备相同的算法。设计了四种接地故障保护方案,一种采用常规的高电阻接地,另外三种采用组合式接地,并以一个中国大型发电机为例进行了仿真。通过比较分析,研究了组合式接地方式对电压注入式接地保护的影响。结果表明,并联电感器会恶化接地电阻的测量结果。并且,如果将并联电感器安装在NGT的HV侧,则最好采用注入电压的接地保护,但是,这会增加设备成本。在接地故障电流限制为10A-25A的范围内,失谐度越大,接地电阻的测量越好。

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