Condition-based Maintenance with Imperfect Inspections for the GIL Subject to Continuous Degradation and Random Shocks

Songhua Hao, Jun Yang, Hao Wang, Kun Wang
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Abstract

In recent decades, the gas insulated transmission line (GIL) has been developed as a reliable technology for electric power transmission. The GIL are subject to degradation-shock-based competing failure modes of SF6 gas leakage and partial discharge. To maintain the high reliability of the GIL in its long lifetime, condition-based maintenance (CBM) can be designed based on inspected degradation levels. However, due to the complex inner structures and limited inspection environment of the GIL, the SF6 leakage rate cannot always be perfectly inspected. Therefore, this paper proposes a new CBM strategy with imperfect inspections for the GIL. Based on the concepts of false positive (FP) and false negative (FN) incurred by imperfect inspections, long run cost rate is computed under three different scenarios of maintenance actions, i.e., ending up with corrective maintenance (CM) for soft failure, CM for hard failure, and preventive maintenance (PM). The optimal inspection interval and preventive maintenance threshold are obtained by minimizing the long run cost rate. A numerical example illustrates the effectiveness of the proposed strategy, and sensitivity analysis is conducted to study the effects of imperfect inspection cost and inspection error.
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受连续退化和随机冲击影响的GIL不完善检测的状态维修
近几十年来,气体绝缘输电线路作为一种可靠的电力传输技术得到了发展。GIL受到基于降解冲击的SF6气体泄漏和局部放电的竞争失效模式的影响。为了在长寿命内保持GIL的高可靠性,可以根据已检测的退化程度设计基于状态的维护(CBM)。然而,由于GIL内部结构复杂,检测环境有限,SF6泄漏率并不总是能够得到完美的检测。因此,本文提出了一种针对GIL的不完全检测的CBM策略。基于不完善检查产生的假阳性(FP)和假阴性(FN)的概念,计算了三种不同维护行为情景下的长期运行成本率,即对软故障进行纠正性维护(CM),对硬故障进行纠正性维护(CM)和预防性维护(PM)。通过最小化长期运行成本率,获得最优巡检间隔和预防性维护阈值。数值算例验证了该策略的有效性,并对不完全检测成本和检测误差的影响进行了灵敏度分析。
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