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Development of Fault Diagnosis System for Transformer Based on Multi-class Support Vector Machines

机译:基于多类支持向量机的变压器故障诊断系统开发

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The support vector machine (SVM) is an algorithm based on structure risk minimizing principle and having high generalization ability. It is strong to solve the problem with small sample, nonlinear and high dimension. The fundamental theory of DGA (Dissolved Gas Analysis, DGA) and fault characteristic of transformer is firstly researched in this paper, and then the disadvantages of traditional method of transformer fault diagnosis are analyzed, finally, a new fault diagnosis method using multi-class support vector machines (M-SVMs) based on DGA theory for transformer is put forward. Then the fault diagnosis model based on M-SVMs for transformer is established. At the same time, the fault diagnosis system based on M-SVMs for transformer is developed. The system can realize the acquisition of the dissolving gas in the transformer oil and data timely and low cost transmission by GPRS (General Packet Radio Service, GPRS). And it can identify out the transformer running state according to the acquisition data. The test results show that the method proposed has an excellent performance on correct ratio. And it can overcome the disadvantage of the traditional three-ratio method which lacks of fault coding and no fault types in the existent coding. Combining the wireless communication technology with the monitoring technology, the designed and developed system can greatly improve the real-time and continuity for the transformer' condition monitoring and fault diagnosis.
机译:支持向量机(SVM)是一种基于结构风险最小化原理并且具有较高泛化能力的算法。用小样本,非线性和高维数解决问题很强。本文首先研究了DGA(溶解气体分析,DGA)的基本理论和变压器的故障特性,然后分析了传统变压器故障诊断方法的弊端,最后提出了一种采用多类支持的新型故障诊断方法。提出了基于DGA理论的变压器矢量机(M-SVMs)。建立了基于M-SVM的变压器故障诊断模型。同时,开发了基于M-SVM的变压器故障诊断系统。该系统可通过GPRS(通用分组无线业务,GPRS)实现变压器油中溶解气体的采集和数据的及时,低成本传输。并且可以根据采集的数据识别出变压器的运行状态。测试结果表明,该方法在正确比例下具有优良的性能。它可以克服传统的三比率方法的缺点,该方法缺乏故障编码,在现有的编码中没有故障类型。设计开发的系统将无线通信技术与监测技术相结合,可以大大提高变压器状态监测和故障诊断的实时性和连续性。

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