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Study on Thermal Aging Condition Assessment of Oil-Paper Insulation Based on Statistical Features of Partial Discharge

机译:基于局部放电统计特征的油纸绝缘热老化条件评估研究

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A thermally accelerated aging experiment was designed for simulating the actual environment of transformer insulation in service. Pulse current method was used to measure partial discharge of the test samples with different aging degrees. Four PD spectrums of PRPD model and its 29 features were extracted for aging condition assessment. Aging condition of oil-paper was defined and normalized into a unit circle. Besides, the aging radius R which represents the condition of aged oil-paper was obtained by a linear transformation on degree of polymerization (DP). According to DP, the aging condition of oil-paper was divided into five stages. By using the aging radius R as a single objective, an assessment model was established based on a three-layer BP neural network which was trained by genetic algorithm and LM algorithm respectively. Finally, the test samples were assessed by the trained GA-BP and LM-BP network. Results demonstrate that GA-BP network has the advantages of higher recognition rates and better generation capability comparing with LM-BP network.
机译:设计了一个热加速老化实验,以模拟使用中的变压器绝缘的实际环境。用脉冲电流法测量了不同老化程度的试样的局部放电。提取PRPD模型的四个PD光谱及其29个特征用于老化条件评估。定义油纸的老化条件并归一化为一个单位圆。此外,通过对聚合度(DP)进行线性变换,获得了代表老化的油纸状态的老化半径R。根据DP,油纸的老化条件分为五个阶段。以老化半径R为单一目标,建立了基于三层BP神经网络的评估模型,分别由遗传算法和LM算法训练。最后,通过训练有素的GA-BP和LM-BP网络评估测试样品。结果表明,与LM-BP网络相比,GA-BP网络具有更高的识别率和更好的生成能力。

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