变压器绝缘系统的非线性行为

J. Cheng, P. Werelius, D. Robalino, D. Wang
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引用次数: 1

摘要

电力变压器介电响应分析在许多现场试验和研究项目中得到了广泛的应用。介质频率响应(DFR)和极化去极化电流(PDC)结合适当的纸油模型,可以对电力变压器进行更可靠的状态评估。如果绝缘状态良好,在工频(50/60 Hz)下的功率因数/耗散因数测试通常显示出作为测试电压函数的平坦响应。但是,如果极化电压的存在时间延长,则开始出现电压依赖行为。变压器/套管绝缘系统的矿物油和纤维素形成电荷聚集的界面,从而显示出非线性特性。非线性特性取决于电场强度和绝缘系统的几何形状。用介电响应法测试了几种不同额定功率的变压器和电容器套管,测试范围为20 V至1.4 kVrms。测量结果表明,在低频时存在非线性行为,而高频参数与电压无关。此外,较大的电力变压器对测试电压的敏感性较低。由于PDC法的极化周期较长,其高压畸变比DFR法大。在进行任何绝缘试验之前,需要仔细选择试验电压和频率。
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The nonlinear behavior of the transformer insulation system
Dielectric Response Analysis of power transformer is widely used in a number of field tests and research projects. Both Dielectric Frequency Response (DFR) and Polarization and Depolarization Current (PDC) combined with proper paper-oil modeling are able to give more reliable condition assessment of power transformers. Power factor/dissipation factor test at power frequency (50/60 Hz) usually exhibits a flat response as a function of test voltage if the insulation is in good condition. However, the voltage dependent behavior starts to appear if the existence of the polarization voltage is prolonged. The mineral oil and cellulose of the transformer/bushing insulation system form the interface where electric charges accumulate and thus the nonlinear property shows. The nonlinear property depends on the electric field strength as well as the geometry of the insulation system. Several transformers with different power ratings and a condenser bushing are tested by the Dielectric Response method from 20 V to 1.4 kVrms. The measurements show that the nonlinear behavior may exist at low frequencies while the high frequency parameters are voltage independent. Furthermore, lager power transformers are less sensitive to the test voltages. The high voltage distortion of the PDC method could be more than the DFR method because of its longer polarization period. The test voltage and frequency need to be carefully chosen before carrying out any insulation test.
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