Evaluation of Precipitation Rate Impacts on Overhead Transmission Line Ampacity

Abdallah Abdaelbaset, M. Farrag, S. Farokhi
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Abstract

The worldwide fast pace at which wind power generation technology and its drive train is growing has increased the demand for wind farm connection into the power grid. The UK target of increasing wind energy contribution coupled with the excellent wind profile has led to growing demand for distribution and transmission connection points. The main obstacle hindering large scale of integration of the wind energy is the thermal capacity limits of the existing transmission lines infra structure. Thermal capacity computation techniques are based on heat balance equation stipulated in IEEE 738. This paper analyses the heat balance equation and proposes the addition of new variable to the set of heat balance equations, discusses the economic aspects of dynamic line ratings. The main objective of this paper is to mathematically integrate the effect of precipitation rate into the heat balance equation, based on empirical study conducted.
降水率对架空输电线路容量影响的评价
风力发电技术及其传动系统在世界范围内的快速发展,增加了对风电场接入电网的需求。英国的目标是增加风能的贡献,加上良好的风力剖面,导致对配电和输电连接点的需求不断增长。阻碍风能大规模并网的主要障碍是现有输电线路基础设施的热容量限制。热容量计算技术基于IEEE 738中规定的热平衡方程。本文对热平衡方程进行了分析,提出了在热平衡方程组中增加新的变量,并从经济方面讨论了动态线路额定值。本文的主要目的是在实证研究的基础上,将降水率的影响在数学上整合到热平衡方程中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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