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Remaining useful life prediction and predictive maintenance strategies for multi-state manufacturing systems considering functional dependence

机译:考虑功能依赖的多状态制造系统剩余使用的生命预测和预测性维护策略

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摘要

The performance states of the manufacturing equipment and the quality states of the manufactured products are important indicators for the operational state evaluation and maintenance decision of the multi-state system. Further, the performance degradation of manufacturing components shows some dependence on the decline in product quality. However, the traditional remaining useful life (RUL) prediction and maintenance strategy of manufacturing system are limited to the dependence of the manufacturing components performance degradation. Based on the RUL prediction model that considers the components dependence for product quality requirements, a system predictive maintenance method based on the component functional importance is proposed. First, the connotation of degradation mechanism, functional dependence and RUL for manufacturing system is expounded. Second, a mission reliability oriented RUL prediction method for manufacturing systems is developed based on the functional dependence of components. Third, an approach for average maintenance cost calculation is proposed based on dynamic RUL prediction after each maintenance action, and the functional importance is applied to prioritize the predictive maintenance component-sets. Finally, the case results show that the proposed approach can ensure the ability of manufacturing systems to complete production tasks with high quality product, and reduce the maintenance cost in the production cycle simultaneously.
机译:制造设备的绩效国家和制造产品的质量国家是多州制度评估和维护决定的重要指标。此外,制造部件的性能下降显示了对产品质量下降的一些依赖性。然而,制造系统的传统剩余使用寿命(RUL)预测和维护策略仅限于制造部件性能下降的依赖性。基于考虑产品质量要求的组件依赖性的RUL预测模型,提出了一种基于组件功能重要性的系统预测维护方法。首先,阐述了制造系统的劣化机制,功能依赖性和ruL的内涵。其次,基于组件的功能依赖性,开发了一种用于制造系统的任务可靠性定向RUL预测方法。第三,基于每个维护动作后的动态rul预测提出了一种平均维护成本计算的方法,并应用了功能重要性以优先考虑预测维护组件集。最后,案例结果表明,所提出的方法可以确保制造系统以高质量产品完成生产任务的能力,并同时降低生产周期的维护成本。

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