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State Evaluation Model of High voltage Switchgear Based on Fuzzy Set-valued Statistical Method and Kernel Vector Space Model

机译:基于模糊套装统计方法和内核矢量空间模型的高压开关柜状态评估模型

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The traditional high voltage switchgear (HVS) state evaluation model mostly adopts electrical test, live detection and historical data, neglecting the influence of real-time operation data of HVS composition equipment on the state evaluation results. This paper proposes a HVS operation state evaluation model based on fuzzy set-valued statistics method and kernel vector space model based on electrical test data and on-line monitoring data. First of all, according to the components of high voltage switchgear, the operation state of HVS is described and the evaluation index system is established. Secondly, the fuzzy set-valued statistics method is used to construct the mathematical model of evaluation index weight. Then, the kernel vector space model is introduced, and the Gaussian kernel function is used to map the sample to the features of the high-dimensional feature space. The indicator vector of the sample data and the ideal indicator vector of the high-voltage switchgear operation status level standard are defined in the high-dimensional feature space, and the angle-weighted cosine between the two vectors is calculated as the closeness of the sample to the standard status level, and then the high-voltage switchgear operation status level is obtained. Finally, the real data of a power supply company in western China are simulated. The results show that the greater the closeness degree is, the closer the HVS corresponding to the sample is to the normal state, on the contrary, the smaller the closeness degree is, the closer the HVS is to the fault state.
机译:传统的高压开关设备(HVS)状态评估模型主要采用电气测试,实时检测和历史数据,忽略了HVS组成设备实时运行数据对状态评估结果的影响。本文提出了一种基于模糊设定值统计方法和基于电气测试数据和在线监测数据的内核传染媒介空间模型的HVS操作状态评估模型。首先,根据高压开关设备的组件,描述了HV的操作状态,并且建立了评估指标系统。其次,使用模糊的设定值统计方法来构建评估指标权重的数学模型。然后,引入了内核向量空间模型,并且高斯内核功能用于将样本映射到高维特征空间的特征。样品数据的指示量和高压开关设备操作状态级标准的理想指示灯向量在高维特征空间中定义,并且两个向量之间的角度加权余弦计算为样本的近距离到标准状态级别,然后获得高压开关设备操作状态级别。最后,模拟了中国西部电源公司的实际数据。结果表明,近距离越大,对应于样本的HVS越近,相反,近距离越小,HVS越越近的故障状态。

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