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Estimation of switching transient peak overvoltages during transmission line energization using artificial neural network

机译:利用人工神经网络估算输电线路通电过程中的开关瞬态峰值过电压

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摘要

Overvoltages are one of the most frequently encountered problems during line energization. At the time of restoration transmission line switching is also one of the major causes, which creates overvoltage. The magnitude and shape of the switching overvoltages vary with the system parameters and network configuration and the point-on-wave where the switching operation takes place. Though detailed electromagnetic transient studies carried out for the design of transmission systems, such studies are not common in a day-to-day operation of power system. However it is important for the operator to ensure that peak overvoltages resulting from the switching operations are well within safe limits. This paper presents an Artificial Neural Network (ANN)-based approach to estimate the peak overvoltage generated by switching transients during line energization. In proposed methodology Levenberg-Marquardt method is used to train the multilayer perceptron. The developed ANN is trained with the extensive simulated results, and tested for typical cases. The simulated results presented clearly show that the proposed technique can estimate the peak values of switching overvoltages with good accuracy.
机译:过电压是线路通电期间最常遇到的问题之一。在恢复时,传输线切换也是造成过电压的主要原因之一。开关过电压的大小和形状随系统参数和网络配置以及发生开关操作的波点而变化。尽管对传输系统的设计进行了详细的电磁暂态研究,但这种研究在电力系统的日常运行中并不常见。但是,对于操作员而言,重要的是要确保开关操作产生的峰值过电压完全在安全范围内。本文提出了一种基于人工神经网络(ANN)的方法,用于估计线路通电期间切换瞬变所产生的峰值过电压。在提出的方法中,Levenberg-Marquardt方法用于训练多层感知器。所开发的人工神经网络将接受广泛的模拟结果训练,并针对典型案例进行测试。仿真结果清楚地表明,所提出的技术可以很好地估计开关过电压的峰值。

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