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Optimization of Transformer Sparing and Replacement Strategies using Probabilistic Simulation

机译:利用概率模拟优化变压器备用和更换策略

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An optimal strategy for pro-active replacement and sparing of transformers within a transmission system will balance the costs of transformer replacement and the purchase of spares against the cost of transformers being out of service and the possibility of load-drop. To develop such a strategy, the failure, repair and replacement of equipment in a transmission system was simulated over many years to evaluate how various transformer and sparing strategies compare in terms of the numbers of transformers replaced and the predicted frequency of load drop from the system. The sequential Monte-Carlo simulation employed modeled transformer failures as a function of transformer age and condition. Cascading failures and failure bunching were also modeled in detail. It was concluded that an optimal strategy would combine the pro-active replacement of transformers based on their condition and their contribution to load drop and an increased number of spare transformers.
机译:在传输系统内主动更换和备用变压器的最佳策略是,在更换变压器和购买备件的成本与变压器停运的成本和负载下降的可能性之间取得平衡。为了制定这样的策略,对传输系统中设备的故障,维修和更换进行了多年模拟,以评估各种变压器和备用策略如何根据更换的变压器数量和系统中预计的负载下降频率进行比较。顺序蒙特卡洛仿真采用建模的变压器故障作为变压器寿命和状态的函数。还详细建模了级联故障和故障聚集。结论是,最佳策略将根据变压器的状态,对负载下降的贡献以及增加的备用变压器的数量,对变压器进行主动更换。

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