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Big data driven cycle time parallel prediction for production planning in wafer manufacturing
Authors:Junliang Wang  Jungang Yang  Xiaoxi Wang  Wenjun Zhang
Institution:1. College of Mechanical Engineering, Donghua University, Shanghai, China;2. School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai, China
Abstract:Cycle time forecasting (CTF) is one of the most crucial issues for production planning to keep high delivery reliability in semiconductor wafer fabrication systems (SWFS). This paper proposes a novel data-intensive cycle time (CT) prediction system with parallel computing to rapidly forecast the CT of wafer lots with large datasets. First, a density peak based radial basis function network (DP-RBFN) is designed to forecast the CT with the diverse and agglomerative CT data. Second, the network learning method based on a clustering technique is proposed to determine the density peak. Third, a parallel computing approach for network training is proposed in order to speed up the training process with large scaled CT data. Finally, an experiment with respect to SWFS is presented, which demonstrates that the proposed CTF system can not only speed up the training process of the model but also outperform the radial basis function network, the back-propagation-network and multivariate regression methodology based CTF methods in terms of the mean absolute deviation and standard deviation.
Keywords:Radial basis function network  forecasting  parallel training  cycle time  wafer manufacturing
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