a bayesian least-squares support vector machine method for predicting the remaining useful life of a microwave component
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2017
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Abstract
Rapid and accurate lifetime prediction of critical components in a system is important to maintaining the system’s reliable operation. To this end, many lifetime prediction methods have been developed to handle various failure-related data collected in different situations. Among these methods, machine learning and Bayesian updating are the most popular ones. In this article, a Bayesian least-squares support vector machine method that combines least-squares support vector machine with Bayesian inference is developed for predicting the remaining useful life of a microwave component. A degradation model describing the change in the component’s power gain over time is developed, and the point and interval remaining useful life estimates are obtained considering a predefined failure threshold. In our case study, the radial basis function neural network approach is also implemented for comparison purposes. The results indicate that the Bayesian least-squares support vector machine method is more precise and stable in predicting the remaining useful life of this type of components.
| Reference Key |
sun2017advancesa
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|---|---|
| Authors | ;Fuqiang Sun;Xiaoyang Li;Haitao Liao;Xiankun Zhang |
| Journal | breast journal |
| Year | 2017 |
| DOI |
10.1177/1687814016685963
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| URL | |
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