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Identification of Critical Spans for Monitoring Systems in Dynamic Thermal Rating

机译:确定动态热额定值监控系统的关键跨度

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摘要

Dynamic thermal rating (DTR) has been seen as an important tool for planning and operation of power systems, and recently, for smart-grid applications. To implement an effective DTR system, it is necessary to install monitoring stations along the studied lines, with a tradeoff between accurate estimations and equipment investments. In this paper, a novel heuristic is developed for identifying the number and locations of critical monitoring spans for the implementation of DTR. The heuristic is based on the use of historical-simulated weather data, obtained from a Mesoscale Weather Model, and the statistical analysis of the thermal capacities computed in each span along the line. The heuristic is applied to a line that is 325 km long in North Chile. Optimal monitoring sets, including the number and location of required monitoring stations, are determined for different confidence levels in all line segments. The results are compared to an equidistant monitoring strategy. The proposed heuristic shows robustness since it outperforms the equidistant monitoring strategy in all of the analyzed cases, especially for the longer line segments, which are subject to more complex weather patterns.
机译:动态热额定值(DTR)被视为规划和运行电力系统的重要工具,最近也被用于智能电网应用。为了实施有效的DTR系统,有必要在研究的路线上安装监测站,并在准确估算和设备投资之间进行权衡。在本文中,开发了一种新颖的启发式方法,用于识别实施DTR的关键监视范围的数量和位置。该启发式方法基于从中尺度天气模型获得的历史模拟天气数据的使用,以及沿线每个跨度中计算出的热容量的统计分析。启发式方法适用于智利北部长325公里的一条线路。确定所有线段中不同置信度的最佳监视集,包括所需监视站的数量和位置。将结果与等距监视策略进行比较。所提出的启发式方法具有鲁棒性,因为它在所有分析的情况下都优于等距监视策略,尤其是对于较长的线段,因为这些线段会遇到更复杂的天气模式。

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