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Methodology for Overhead Conductor Replacement Considering Operational Stress and Aging Characteristics

机译:考虑操作应力和老化特性的架空导线更换方法

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This paper presents a novel methodology for the prioritization of overhead conductor replacement considering operational stress and aging characteristics. The time sequential Monte Carlo technique is used to assess the reliability of a distribution network over a planning period. To incorporate the influence of high operating temperatures and aging characteristics into the reliability assessment, up-times of aging conductors are sampled using the interval-by-interval method, Arrhenius life-temperature relationship, and thermal model IEEE 738-2006. Aging conductors are ranked for replacement based on the financial losses caused by their failures throughout the planning period. The methodology was tested using the IEEE 33-bus distribution network model. Results indicate that failures of aging conductors affect significantly system reliability indices. Furthermore, it was determined that financial losses of aging conductors depend on the conductor location and network's protection scheme. The proposed methodology may help utilities improve both asset replacement plans and system reliability.
机译:本文提出了一种新的方法,考虑了工作应力和老化特性,可以优先考虑架空导线的更换。时间序列蒙特卡洛技术用于评估计划期内配电网络的可靠性。为了将较高的工作温度和老化特性的影响纳入可靠性评估,使用间隔法,Arrhenius寿命-温度关系和热模型IEEE 738-2006对老化导体的正常运行时间进行了采样。根据在整个计划期间由于故障造成的财务损失,对老化导体进行替换排名。该方法已使用IEEE 33总线配电网络模型进行了测试。结果表明,老化导体的故障会严重影响系统的可靠性指标。此外,已确定老化的导体的财务损失取决于导体的位置和网络的保护方案。所提出的方法可以帮助公用事业公司改善资产置换计划和系统可靠性。

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