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作 者:Weijun Wang Min Chen Hui Yin Yuan Li
机构地区:[1]Guiyang Power Supply Bureau,Guizhou Power Grid Co.,Ltd.,Guiyang,550004,China [2]College of Electrical Engineering,Sichuan University,Chengdu,610065,China
出 处:《Energy Engineering》2023年第10期2433-2448,共16页能源工程(英文)
基 金:supported by the Science and Technology Project of Guizhou Power Grid Co.,Ltd. (No.GZKJXM20210405).
摘 要:To identify the parameters of the extended Debye model of XLPE cables,and therefore evaluate the insulation performance of the samples,the sparsity-promoting dynamicmode decomposition(SPDMD)methodwas introduced,aswell the basics and processes of its applicationwere explained.The amplitude vector based on polarization current was first calculated.Based on the non-zero elements of the vector,the number of branches and parameters including the coefficients and time constants of each branch of the extended Debye model were derived.Further research on parameter identification of XLPE cables at different aging stages based on the SPDMD method was carried out to verify the practicability of the method.Compared with the traditional differential method,the simulation and experiment indicated that the SPDMD method can effectively avoid problems such as the relaxation peak being unobvious,and possessing more accuracy during the parameter identification.And due to the polarization current being less affected by the measurement noise than the depolarization current,the SPDMD identification results based on the polarization current spectral line proved to be better at reflecting the response characteristics of the dielectric.In addition,the time domain polarization current test results can be converted into the frequency domain,and then used to obtain the dielectric loss factor spectrum of the insulation.The integral of the dielectric loss factor on a frequency domain can effectively evaluate the insulation condition of the XLPE cable.
关 键 词:Cable insulation dielectric response sparsity-promoting dynamic mode decomposition parameter identification
分 类 号:TM91[电气工程—电力电子与电力传动]
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