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Replacement Scheduling of a Fleet of Hydroelectric Generators: A Case Study

机译:水轮发电机组的更换调度:一个案例研究

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This paper presents a framework to determine optimal maintenance planning of a fleet of complex and independent systems. They are made up of several major components which operate in different environment conditions, and are built with different technologies. This framework uses proportional hazard model (PHM) to characterize the failure rates of components and the effects of the environmental conditions and the load levels. A nonlinear program is developed to minimize the fleet maintenance cost under age replacement policy of its components and a set of organizational and technical constraints. Lindo API and NOMAD are used to solve the nonlinear model. The framework is applied to set a preliminary plan to overhaul a fleet of 90 hydroelectric generators in 6 power plants over 50 years. Sensitivity and performance indexes are built to interpret the optimization results in two settings: normal and 50% increase in load.
机译:本文提出了一个框架,用于确定一组复杂且独立的系统的最佳维护计划。它们由在不同环境条件下运行的几个主要组件组成,并使用不同的技术构建。该框架使用比例风险模型(PHM)来表征组件的故障率以及环境条件和负载水平的影响。开发了一个非线性程序,以在其组件的年龄更换政策以及一系列组织和技术约束下最大程度地减少车队维护成本。 Lindo API和NOMAD用于求解非线性模型。该框架适用于制定初步计划,以在50年内对6个发电厂的90台水力发电机进行大修。建立了灵敏度和性能指标来解释两种设置下的优化结果:正常负载和50%的负载增加。

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