残余物
平滑的
计算机科学
期限(时间)
特征(语言学)
状态监测
一般化
工程类
算法
计算机视觉
数学
物理
电气工程
数学分析
哲学
量子力学
语言学
作者
Xianli Liu,Shaoyang Liu,Xuebing Li,Bowen Zhang,Caixu Yue,Steven Y. Liang
标识
DOI:10.1016/j.jmsy.2021.06.006
摘要
Effective tool wear monitoring (TWM) is essential for accurately assessing the degree of tool wear and for timely preventive maintenance. Existing data-driven monitoring methods mainly rely on complex feature engineering, which reduces the monitoring efficiency. This paper proposes a novel TWM model based on a parallel residual and stacked bidirectional long short-term memory (PRes–SBiLSTM) network. First, a parallel residual network (PResNet) is used to extract the multi-scale local features of sensor signals adaptively. Subsequently, a stacked bidirectional long short-term memory (SBiLSTM) network is used to obtain the time-series features related to the tool wear characteristics. Finally, the predicted tool wear value is outputted through a fully connected network. A smoothing correction method is applied to improve the prediction accuracy. The proposed model is experimentally verified to have a high prediction accuracy without sacrificing its generalization ability. A TWM system framework based on the PRes–SBiLSTM network is proposed, which has a certain reference value for TWM in actual industrial environments.
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