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An artificial immune system with continuous-learning for voltage disturbance diagnosis in electrical distribution systems

机译:具有连续学习的人工免疫系统,用于配电系统中的电压干扰诊断

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This paper presents a new artificial immune algorithm with continuous-learning, which is inspired by the biological immune system, to realize the voltage diagnosis in electrical distribution systems. This conception allows one to compose a diagnosis system that can continuously learn without reinitialization when new disturbances occur due to the evolution of the electrical system. Two artificial immune algorithms, which are the negative selection algorithm and the clonal selection algorithm, are used for the pattern recognition process and the learning process, respectively. The principal application of this new method aids the operation during failures, supervises the protection system, and can evolve with the power systems to continuously acquire new knowledge. This new methodology has a direct impact in the area of diagnosis in electrical systems, as well as, in the pattern recognition problem, because the main contribution and novelty of this method is the continuous learning capability, which enables the system to learn unknown patterns without having to restart the knowledge. This is the major advantage of this methodology. To evaluate the efficiency and performance of this new method, failure simulations were performed in a real distribution system with 134 buses using the EMTP software. The results show robustness and efficiency. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的具有连续学习的人工免疫算法,该算法受生物免疫系统的启发,可以实现配电系统中的电压诊断。这一概念使人们可以组成一种诊断系统,该诊断系统可以在由于电气系统的发展而出现新的干扰时无需重新初始化就可以连续学习。两种人工免疫算法分别是否定选择算法和克隆选择算法,分别用于模式识别过程和学习过程。这种新方法的主要应用是在故障期间帮助操作,监督保护系统,并且可以随着电力系统的发展而不断获得新知识。这种新方法对电气系统的诊断领域以及模式识别问题具有直接影响,因为该方法的主要贡献和新颖之处在于其连续学习能力,这使系统能够学习未知模式而无需进行任何操作。必须重新开始知识。这是该方法的主要优点。为了评估这种新方法的效率和性能,使用EMTP软件在具有134总线的实际配电系统中进行了故障模拟。结果显示了鲁棒性和效率。 (C)2016 Elsevier Ltd.保留所有权利。

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