首页> 外文期刊>IEEE Transactions on Industrial Electronics >Novel Rotor Ground-Fault Detection Algorithm for Synchronous Machines With Static Excitation Based on Third-Harmonic Voltage-Phasor Comparison
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Novel Rotor Ground-Fault Detection Algorithm for Synchronous Machines With Static Excitation Based on Third-Harmonic Voltage-Phasor Comparison

机译:基于三次谐波电压相量比较的静止励磁同步电机转子接地故障检测算法

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This paper presents a new algorithm for detecting ground faults in rotor windings. This location method is suitable for synchronous generators with static excitation, whose excitation field winding is fed by controlled rectifiers through an excitation transformer. This new algorithm is an improvement of an online ground-fault location method presented previously, in which the effect of the rotor capacitance has a high influence in the correct detection of the fault. The detection of the ground fault is performed by the supervision of the phase angle between two phasor voltages. The first one is the third-harmonic phasor voltage obtained from the measurement of the field voltage, which is used as a reference. The second one is the third-harmonic voltage phasor obtained by the measurement in a grounding resistance placed in the neutral of the excitation transformer. It allows not only detecting the ground fault along the field winding but also distinguishing the cases of ground fault in the rotor winding, from the cases of high influence of the rotor capacitance in healthy condition. This new algorithm has been tested with satisfactory results in a 106-MVA hydro generating unit.
机译:本文提出了一种检测转子绕组接地故障的新算法。这种定位方法适用于具有静态励磁的同步发电机,其励磁绕组由受控整流器通过励磁变压器馈电。该新算法是对先前提出的在线接地故障定位方法的改进,其中转子电容的影响对故障的正确检测有很大的影响。接地故障的检测是通过监控两个相量电压之间的相角来进行的。第一个是通过测量励磁电压获得的第三谐波相量电压,该电压用作参考。第二个是通过测量放置在励磁变压器中性点中的接地电阻获得的三次谐波电压相量。它不仅可以检测沿励磁绕组的接地故障,而且还可以区分转子绕组中的接地故障和健康状况下转子电容的高影响情况。该新算法已在106-MVA水力发电机组中进行了测试,结果令人满意。

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