首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Overhead line real-time rating estimation algorithm: description and validation
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Overhead line real-time rating estimation algorithm: description and validation

机译:架空线实时评级估算算法:描述和验证

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摘要

This article describes research that aims to realize a real-time rating (RTR) system for power system components. The RTR technology is regarded with interest due to its potential to unlock network power transfer capacity, improve power flow congestion management flexibi-lity, and facilitate the connection of distributed generation. The solution described in this work involves the use of a limited number of meteorological stations and a series of analytical models for estimating component ratings. The effect of data uncertainty is taken into account by an estimation algorithm based on the Monte Carlo method. Estimations of conductor temperature and environmental conditions have been validated against measured data in five different network locations. Average errors of−2.2,−1.9,−1.2,−1.9, and 1.4 °C were found for the five different network locations over a period of 71 days when comparing estimates to measured results. Results analysis identified that the models used were the main source of error. The estimation of wind direction and solar radiation was the most sensitive to errors in the models. Therefore, suggestions are made regarding the improvement of these models and the RTR estimation system.
机译:本文介绍了旨在实现电力系统组件实时评级(RTR)系统的研究。由于RTR技术具有释放网络电力传输能力,提高潮流拥塞管理灵活性以及促进分布式发电连接的潜力,因此受到人们的关注。这项工作中描述的解决方案涉及使用有限数量的气象站和一系列分析模型来估计组件等级。基于蒙特卡洛方法的估计算法考虑了数据不确定性的影响。导体温度和环境条件的估计已针对五个不同网络位置的测量数据进行了验证。将估算值与测量结果进行比较,发现在71天内的五个不同网络位置的平均误差分别为-2.2,-1.9,-1.2,-1.9和1.4°C。结果分析表明,使用的模型是误差的主要来源。风向和太阳辐射的估计对模型中的误差最敏感。因此,对这些模型和RTR估计系统的改进提出了建议。

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