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A Novel Self-Adaptive Compensated Differential Protection Design Suitable for the Generator With Considerable Winding Distributed Capacitance

机译:适用于绕组分布电容相当的发电机的新型自适应补偿型差动保护设计

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This paper presents a self-adaptive compensated differential protection of ac synchronous generators, particularly a type of high-voltage graded insulated cable wound generator, powerformer. The phase voltages at the terminals are utilized to estimate the capacitive currents when the generator is synchronized and no fault is detected. With the calculated capacitive current the capacitance distribution along with the winding of the generator can be determined. This capacitance will be equivalently arranged on the terminal and neutral of the generator respectively in a reasonable partition. Then, the capacitive current in the case of normal operation, external fault and internal fault can be calculated using the terminal voltage and the determined capacitance. It can be compensated to improve the reliability of the differential protection. The feasibility and effectiveness of the proposed scheme is proved with the simulation test results.
机译:本文提出了一种交流同步发电机的自适应补偿差动保护,特别是一种高压分级绝缘电缆绕线发电机,即powerformer。当发电机同步且未检测到故障时,端子上的相电压用于估算电容性电流。利用计算出的电容电流,可以确定电容分布以及发电机的绕组。该电容将分别合理地分配在发电机的接线端和中性线上。然后,可以使用端子电压和确定的电容来计算正常操作,外部故障和内部故障情况下的电容电流。可以对其进行补偿以提高差动保护的可靠性。仿真实验结果证明了该方案的可行性和有效性。

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