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A Novel Methodology for the Determination of Impulse Response Coefficients Applied to Transmission Line Protection Relays

机译:一种新的方法,用于确定应用于传输线保护继电器的脉冲响应系数

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Impulse Response Coefficients (IRC) of digital filters is an imperative step in the development of transmission line protection relay algorithms. Traditionally, Fourier-based filters are used in real applications, where IRC are fixed values of sine and cosine functions with a data window of one or more cycles. Based on state-of-the-art, Mother Wavelet coefficients used in Multiresolution Analysis, and Structuring Element coefficients used in Mathematical Morphology are usually proposed to develop protection algorithms. However, the proper choice of these coefficients is based on empirical process of trial and error. This paper proposes a novel methodology for optimally determining coefficients that depend on the waveform structure analyzed, which is determined using variance as the metric. Assessment of methodology for three case studies considering requirements of relay manufactures (response time, design, harmonic attenuation and other) is presented. The first assessment is to extract coefficients useful for distinguishing among non-fault conditions, harmonics, and arcing faults. The second one is to extract coefficients to filter harmonic components. The assessment is carried out considering different data windows and sampling rates. Test results highlight the efficiency of the model to determine specific coefficients for each case study analyzed. Interestingly, results also showed that the discovered coefficients can be used in another filtering technique. Thus, the third case study involves developing two fault classifiers, which are developed using mathematical morphology where the structuring elements used correspond to the coefficient vectors determined through the proposed methodology. There is a notable paucity of scientific literature focusing on this topic. Therefore, there are several important areas where this study makes an original contribution regarding protection relays.
机译:数字滤波器的脉冲响应系数(IRC)是传输线保护继电器算法开发的一个势不一准步骤。传统上,基于傅里叶的过滤器用于实际应用中,其中IRC是具有一个或多个循环的数据窗口的正弦和余弦函数的固定值。基于最先进的,在多分辨率分析中使用的母小波系数,以及数学形态学中使用的结构化元素系数以开发保护算法。但是,这些系数的正确选择是基于试验和错误的经验过程。本文提出了一种用于最佳地确定取决于分析的波形结构的系数的新方法,这是使用差异作为度量确定的。提出了考虑继电器的要求(响应时间,设计,谐波衰减和其他)的三个案例研究方法的评估。第一个评估是提取可用于区分非故障条件,谐波和电弧磁性故障的系数。第二个是提取滤波谐波分量的系数。考虑到不同的数据窗口和采样率,进行评估。测试结果突出了模型的效率,以确定分析每个案例研究的特定系数。有趣的是,结果还表明,发现的系数可以用在另一滤波技术中。因此,第三种情况研究涉及开发两个故障分类器,其使用数学形态学开发,其中使用的结构元件对应于通过所提出的方法确定的系数矢量。有一个值得注意的科学文学缺乏关注这个话题。因此,有几个重要领域在该研究对保护继电器进行了原始贡献。

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