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An EMD-DT Assisted Intelligent Protection Scheme for TCSC Compensated Transmission Lines

机译:用于TCSC补偿传输线的EMD-DT辅助保护方案

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The dynamic variation of impedance during different operating modes of Thyristor Controlled Series Capacitor (TCSC) compensated transmission lines impose protection challenges to the conventional distance relays. The use of nonlinear metal oxide varistor for protection of the TCSC makes the impedance variation further complex during fault. This paper proposes a two criteria based improved fault detection and classification scheme for such networks. The method employs the sign of the change in the magnitude of positive-sequence current at both ends of the line for fault detection and an intelligent hybrid scheme based on empirical mode decomposition-decision tree for fault classification. The proposed approach is evaluated on 10,800 fault data generated on the modified WSCC 9-bus power system using EMTDC/PSCAD. The fault detection and classification accuracies are found to be 100% and 99.60%, respectively. The low computational burden with comparatively higher accuracies in the detection and classification faults compared to the available intelligent training based approaches justify the efficacy of the proposed protection scheme.
机译:晶闸管控制串联电容器(TCSC)补偿传输线的不同操作模式期间阻抗的动态变化施加到传统距离中继的保护挑战。非线性金属氧化物压敏电阻用于保护TCSC的使用使阻抗变异在故障期间进一步复杂。本文提出了一种基于两个网络的基于标准的改进故障检测和分类方案。该方法采用基于经验模式分解决策树的故障检测线的两端的正序电流的变化符号,以及基于实证模式分解决策树的故障分类的智能混合方案。使用EMTDC / PSCAD在修改的WSCC 9总线电力系统上生成的10,800个故障数据评估所提出的方法。故障检测和分类准确性分别为100%和99.60%。与可用智能训练的方法相比,检测和分类故障中的低计算负担与基于可用的智能训练的方法相比,可以证明所提出的保护方案的功效。

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