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Applications of fuzzy inference mechanisms to power system relaying

机译:模糊推理机制在电力系统中继的应用中的应用

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Most transmission line protective schemes are based on deterministic computations on a well defined model of the system to be protected. This results in difficulty because of the complexity of the system model, the lack of knowledge of its parameters, the great number of information to be processed, and the difficulty in taking into consideration any system variation as the rules are fixed. The application of fuzzy logic for exploring complex, nonlinear systems, diagnosis systems and other expert systems, particularly when there is no simple mathematical model to be performed, provides a very powerful and attractive solution to classification problems. In this paper, a feasibility study on the application of different fuzzy reasoning mechanisms to power system relaying algorithms is conducted. Those mechanisms are namely, Mamdani's mechanism, Larsen's mechanism, Takagi-Sugeno's mechanism, and Tsukamoto mechanism. A comparative analysis on the application of these fuzzy inference mechanisms to a novel fault detection and phase selection technique on EHV transmission lines is reported. The proposed scheme utilises only the phase angle between two line currents for the decision making part of the scheme. A sample three-phase power system was simulated using the EMTP software. An online wavelet-based preprocessor stage is used with data window of 10 samples (based on 4.5 kHz sampling rate and 50 Hz power frequency). The performance of the proposed model was extensively tested in each case of fuzzy inference mechanism using the MATLAB software. The advantages and disadvantages of each mechanism are reported and compared together. Some of the test results are included in this paper.
机译:大多数传输线保护方案基于要保护系统的良好定义模型的确定性计算。这导致难度因系统模型的复杂性,缺乏对其参数的知识,要处理的大量信息,以及考虑到规则的任何系统变化的难度。模糊逻辑在探索复杂,非线性系统,诊断系统和其他专家系统中的应用,特别是当没有进行简单的数学模型时,为分类问题提供非常强大和有吸引力的解决方案。在本文中,对不同模糊推理机制应用于电力系统中继算法的可行性研究。这些机制是,Mamdani的机制,Larsen的机制,Takagi-Sugeno的机制和Tsukamoto机制。报道了这些模糊推理机制在EHV传输线上采用新型故障检测和相位选择技术的比较分析。所提出的方案仅利用两行电流之间的相位角来实现该方案的决策。使用EMTP软件模拟样品三相电力系统。基于在线小波的预处理器阶段使用10个样本的数据窗口(基于4.5 kHz采样率和50 Hz功率频率)。使用MATLAB软件的模糊推理机制的每种情况下广泛测试所提出的模型的性能。报告并将各种机制的优点和缺点在一起。本文包含一些测试结果。

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