首页> 外文会议>第九届电介质材料性能与应用国际会议(The 9th International Conference on Properties and Applications of Dielectric Materials)论文集 >Monte-Carlo-Based Modeling of Asset Management of Electric Power Apparatuses for Assessing Influence of Wide Variety of Degradation Extent and Failure Probability
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Monte-Carlo-Based Modeling of Asset Management of Electric Power Apparatuses for Assessing Influence of Wide Variety of Degradation Extent and Failure Probability

机译:基于Monte-Carlo的电力设备资产管理建模,以评估各种劣化程度和故障概率的影响

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摘要

This study proposes a numerical model to assess the usability of asset management of electric power apparatuses. A monte-carlo technique is employed, so that the various factors, i.e. the wide variety of degradation extent and failure probability among the electric power apparatuses, and the various replacement policy and constraints, etc, can be taken into account. As an example of electric power apparatuses, the model is applied for the asset management of 6.6 kV XLPE cables, where the maximum water-tree length is used as the degradation index. The replacement of cables by three situations is taken into account, i.e. failure, expiration of pre-determined service life, and detection of degradation index exceeding replacement criteria. The LCC of each cable is calculated based on the calculated numbers of failure, replacement and diagnosis. The mean value and variation of LCC of a set of cables is evaluated by summarizing the various values of LCC of each cable. The optimum asset management is evaluated as the situation with the minimum LCC, which is derived by adjusting replacement criteria and diagnosis interval. The proposed model is applied to discuss the influence of upper limit of annual replaceable cables on the optimum management as an example of replacement constraints.
机译:这项研究提出了一个数值模型来评估电力设备的资产管理的可用性。使用蒙特卡洛技术,从而可以考虑各种因素,即电力设备之间的退化程度和故障概率的多样性,以及各种替换策略和约束等。以电力设备为例,该模型适用于6.6 kV XLPE电缆的资产管理,其中最大水树长度用作退化指标。考虑了三种情况下的电缆更换,即故障,预定使用寿命到期以及检测到的劣化指数超过了更换标准。每条电缆的LCC均根据计算出的故障,更换和诊断次数进行计算。通过汇总每条电缆的LCC的各种值,可以评估一组电缆的LCC的平均值和变化。通过调整更换标准和诊断间隔,可以将最佳资产管理评估为具有最低LCC的情况。提出的模型以更换约束为例,讨论了年度可更换电缆的上限对最优管理的影响。

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