论文标题

通过交互预测进行优化维护计划的分解方法

A Decomposition Method by Interaction Prediction for the Optimization of Maintenance Scheduling

论文作者

Chancelier, Jean-Philippe, Bittar, Thomas, Carpentier, Pierre, Chancelier, J-Ph, Lonchampt, Jérôme

论文摘要

优化维护计划是提高水力发电厂性能的主要问题。我们研究同一家族的几个物理组件的系统:一组涡轮机,一组变压器或一组发电机。该组件共享备件的普通股并经历根据已知故障分布发生的随机失败。我们寻求一种确定性的预防性维护策略,该策略可根据系统的维护和强迫中断,最大程度地减少预期成本。辅助问题原理用于将原始的大规模优化问题分解为一系列较小维度的独立子问题,同时确保其协调。每个子问题都在于优化单个组件上的维护。分解协调技术基于变异技术,但维护优化问题是一个混合企业问题。因此,我们放宽了系统的动力和成本功能。所得算法迭代地通过黑框方法求解了放松系统上的子问题,并协调组件。放松参数对优化有重要影响,必须适当选择。然后,可接受的维护策略是从松弛问题的解决方案中得出的。我们将分解算法应用于具有80个组件的系统。它的表现优于直接应用于原始问题的参考黑框方法。

Optimizing maintenance scheduling is a major issue to improve the performance of hydropower plants. We study a system of several physical components of the same family: either a set of turbines, a set of transformers or a set of generators. The components share a common stock of spare parts and experience random failures that occur according to known failure distributions. We seek a deterministic preventive maintenance strategy that minimizes an expected cost depending on maintenance and forced outages of the system. The Auxiliary Problem Principle is used to decompose the original large-scale optimization problem into a sequence of independent subproblems of smaller dimension while ensuring their coordination. Each subproblem consists in optimizing the maintenance on a single component. Decomposition-coordination techniques are based on variational techniques but the maintenance optimization problem is a mixed-integer problem. Therefore, we relax the dynamics and the cost functions of the system. The resulting algorithm iteratively solves the subproblems on the relaxed system with a blackbox method and coordinates the components. Relaxation parameters have an important influence on the optimization and must be appropriately chosen. An admissible maintenance strategy is then derived from the resolution of the relaxed problem. We apply the decomposition algorithm on a system with 80 components. It outperforms the reference blackbox method applied directly on the original problem.

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