利用
计算机科学
对抗制
人工智能
方案(数学)
无线传感器网络
传感器融合
机器学习
深度学习
数据挖掘
特征提取
计算机安全
计算机网络
数学
数学分析
作者
Xiang Li,Yixiao Xu,Naipeng Li,Bin Yang,Yaguo Lei
标识
DOI:10.1109/jas.2022.105935
摘要
In recent years, intelligent data-driven prognostic methods have been successfully developed, and good machinery health assessment performance has been achieved through explorations of data from multiple sensors. However, existing data-fusion prognostic approaches generally rely on the data availability of all sensors, and are vulnerable to potential sensor malfunctions, which are likely to occur in real industries especially for machines in harsh operating environments. In this paper, a deep learning-based remaining useful life (RUL) prediction method is proposed to address the sensor malfunction problem. A global feature extraction scheme is adopted to fully exploit information of different sensors. Adversarial learning is further introduced to extract generalized sensor-invariant features. Through explorations of both global and shared features, promising and robust RUL prediction performance can be achieved by the proposed method in the testing scenarios with sensor malfunctions. The experimental results suggest the proposed approach is well suited for real industrial applications.
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