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A Novel Model Recognition -based Current Differential Protection in Time-Domain

机译:基于新型模型识别的时域电流差动保护

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摘要

By applying the Bergeron line model in time-domain, a novel model recognition -based current differential protection (MRCDP) principle is proposed in this paper. Based on the fault network differences, the differential models for both the internal and external fault component networks are built respectively. For a kind of fault, the sampled fault data satisfies the corresponding differential model, namely, fault states can be distinguished by recognizing the correlation between the fault data and the benchmark model. Besides, the full-frequency fault information in the time-domain is applied to compute the model error, which enhances the adaptability of the proposed algorithm to the fault transient. Meanwhile, the proposed method performs good ability to resist the influence of the fault resistance and is unaffected by the capacitive current. Simulation results of both the over-head-line (OHL) and underground cable (UC) -based transmission systems verify the effectiveness and merits of the relay principle.
机译:通过在时域中应用Bergeron线路模型,提出了一种基于模型识别的新型电流差动保护(MRCDP)原理。根据故障网络的差异,分别建立内部和外部故障组件网络的差分模型。对于一种故障,采样的故障数据满足相应的差分模型,即,通过识别故障数据与基准模型之间的相关性可以区分故障状态。此外,利用时域中的全频故障信息来计算模型误差,从而提高了所提算法对故障暂态的适应性。同时,该方法具有良好的抵抗故障电阻影响的能力,并且不受电容电流的影响。基于架空线(OHL)和地下电缆(UC)的传输系统的仿真结果证明了中继原理的有效性和优点。

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