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A New Testing Method for the Diagnosis of Winding Faults in Transformer

机译:一种新的变压器绕组故障诊断的新测试方法

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In this article, a new testing method for the diagnosis of winding faults based on the resonant frequency of the transformer is proposed. The system that consists of the high-voltage dc power and high-voltage insulated gate bipolar transistor (IGBT) could charge the transformer periodically. The response measured from the bushing of the winding is the oscillating wave that can be used for evaluating the status. Carrying out the new test on a 220-kV three-winding, three-phase transformer in the field, the tests of insulation and the winding have been completed in one test. The calculated frequency verifies the feasibility and applicability of the method in theory and the voltage does not affect the resonant frequency in the test. The three-winding, three-phase model transformer was built to simulate the various parameters of the power supply, which proves that the features of the oscillating waves are brought about by the properties of the transformer. Also, the new testing method provides a new opportunity to do parameter identification of axial displacement and short-circuit (SC) fault. The abovementioned research shows that the proposed method can conduct the test of winding and insulation in one test for a short time, which proves a reference in the field.
机译:在本文中,提出了一种新的测试方法,用于诊断基于变压器的谐振频率的绕组故障。由高压DC电源和高压绝缘栅双极晶体管(IGBT)组成的系统可以定期向变压器充电。从绕组的衬套测量的响应是可以用于评估状态的振荡波。在现场的220 kV三绕组,三相变压器上进行新测试,在一次测试中完成了绝缘和绕组的测试。计算频率验证了理论上的方法的可行性和适用性,电压不会影响测试中的谐振频率。建立了三相三相模型变压器,以模拟电源的各种参数,这证明了振荡波的特征是由变压器的特性带来的。此外,新的测试方法提供了对轴向位移和短路(SC)故障进行参数识别的新机会。上述研究表明,所提出的方法可以在一次测试中进行绕组和绝缘的测试,这证明了该领域的参考。

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