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Real-time dynamic thermal rating evaluation of overhead power lines based on online adaptation of Echo State Networks

机译:基于回声状态网络在线自适应的架空电力线实时动态热额定值评估

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To assist utilities in utilizing the overhead power lines more effectively and thus to optimize the utilization of the existing system, it is important to know how to accurately assess the real-time dynamic overload current capacity of lines down to a ‘per span’ level of granularity. Accurate prediction of the conductor temperature ahead of time subject to various conductor overload conditions is the most critical and challenging step when determining the line dynamic thermal rating. An Echo State Network (ESN) based identifier has been demonstrated to identify the overhead conductor thermal dynamics under different weather conditions in a batch learning mode with good accuracy [1]. Through the use of the ESN model, the prediction of conductor temperature can be obtained easily, which in turn helps determine the line dynamic rating in real time. This paper proposes a Sliding-Window (SW) based online learning algorithm to obtain the online adaptation of the ESN-based thermal dynamics identifier to any new/changed ambient weather conditions along the overhead conductor on a continuous base. Both simulation and experimental results are presented to validate the performance of the proposed algorithm. This method requires only temperatures and line current as inputs and its simplified calculation makes it an attractive and cost effective solution to real-time implementation.
机译:为了帮助公用事业公司更有效地利用架空电力线,从而优化现有系统的利用率,重要的是要知道如何准确地评估低至“跨度”水平的线路的实时动态过载电流容量。粒度。在确定线路动态热额定值时,在各种导体过载条件下提前准确预测导体温度是最关键和最具挑战性的步骤。已经证明,基于回声状态网络(ESN)的标识符可以在批处理学习模式下以良好的精度识别架空导体在不同天气条件下的热动力学[1]。通过使用ESN模型,可以轻松获得导体温度的预测,进而有助于实时确定线路动态额定值。本文提出了一种基于滑动窗口(SW)的在线学习算法,以获得基于ESN的热力学标识符对连续基础上架空导线上任何新的/变化的环境天气条件的在线适应性。仿真和实验结果都被提出来验证所提出算法的性能。该方法仅需要温度和线电流作为输入,其简化的计算使其成为实时实施的一种有吸引力且具有成本效益的解决方案。

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