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Analysis of a Stator Earth Fault Protection System of a Medium Voltage Converter-Fed Synchronous Motor

机译:中压变频器馈电同步电动机定子接地故障保护系统分析

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For grinding aplications cycloconverter-fed gearless mill drives are being applied with increasing powers and new risks emerge with the systems scaling-up. Traditional parasitic second order effects may be not neglected, like thermal expansions, electromagnetic effects and EMC emissions. In this frame, harmonics and partial discharges of windings in medium voltage converter-fed machines build additional leakage current background that masks eventual phase insulation failures or produce nuissance trips in the protective system. Despite these perturbations, for reliable operation, the electrical protection system must detect properly a phase-to-ground fault of the motor in the 100% length of stator winding with the trade-off between sensititvity ad insensitivity. This work presents a study and discussion based on modeling and simulation for assessing the limitations and range of application of a 100% earth fault protection configuration, considering the operation of this protection acting also as earth leakage protection.
机译:对于研磨应用,使用循环变流器喂入的无齿轮磨机驱动器的功率越来越大,随着系统规模的扩大,出现了新的风险。可能不会忽略传统的寄生二阶效应,例如热膨胀,电磁效应和EMC辐射。在这种情况下,中压变频器供电电机的绕组谐波和局部放电会形成额外的泄漏电流本底,从而掩盖最终的相绝缘故障或在保护系统中产生误跳闸。尽管存在这些干扰,但为了获得可靠的运行,电气保护系统必须在100%定子绕组长度内正确检测电动机的相接地故障,并在灵敏度与不灵敏度之间进行权衡。这项工作提出了基于建模和仿真的研究和讨论,以评估100%接地故障保护配置的局限性和应用范围,同时考虑到该保护也可以作为漏电保护。

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