CATEGORY:
REMAINING USEFUL LIFE
Real-time prediction of remaining useful life and preventive opportunistic maintenance strategy for multi-component systems considering stochastic dependence
Real-time prediction of remaining useful life and preventive opportunistic maintenance strategy for multi-component systems considering stochastic dependence
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Type
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Journal
Article
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Author
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Hui
Shi
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Author
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Jianchao
Zeng
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URL
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Volume
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93
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Pages
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192-204
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Publication
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Computers
& Industrial Engineering
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Date
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March
2016
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Abstract
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Reports
a dynamic opportunistic condition-based maintenance strategy for
multi-component systems. The strategy is based on real-time predictions of
the remaining useful life under the simultaneous consideration of economic
and stochastic dependence. The effect of a component’s degradation level on
the remaining useful life of other components is considered. The remaining
useful life of components that have a stochastic dependence on one another is
predicted using stochastic filtering theory. Given the condition monitoring
history data, authors model the effect of a component’s degradation level on
the remaining useful life of other components.
A penalty cost evaluates the additional cost of shifting the maintenance time. This makes it possible to determine the optimal trade-off between reducing the remaining useful life of some components and decreasing the set-up cost of maintenance. An optimization model is then established by choosing the dynamic opportunistic maintenance zone and optimal group structure that minimizes the long-term average maintenance cost of the system. A numerical example including three multi-component systems is presented. The results show that the method maximizes production efficiency on the premise of ensuring system reliability, and reduces the system operation and maintenance costs. |
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