Development of Smart Semiconductor Manufacturing: Operations Research and Data Science Perspectives
With advances in information and telecommunication technologies and data-enabled decision making, smart manufacturing can be an essential component of sustainable development. In the era of the smart world, semiconductor industry is one of the few global industries that are in a growth mode to smart...
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doaj-a8e6678f2a0a49e48cdae181860b3f5c2021-04-05T17:05:13ZengIEEEIEEE Access2169-35362019-01-01710841910843010.1109/ACCESS.2019.29331678787825Development of Smart Semiconductor Manufacturing: Operations Research and Data Science PerspectivesMarzieh Khakifirooz0https://orcid.org/0000-0002-1721-2646Mahdi Fathi1Kan Wu2School of Science and Engineering, Tecnològico de Monterrey, Campus Santa Fe, Mexico City, MexicoDepartment of Industrial and Systems Engineering, Mississippi State University, Starkville, MS, USADivision of Systems and Engineering Management, Nanyang Technological University, Singapore639798With advances in information and telecommunication technologies and data-enabled decision making, smart manufacturing can be an essential component of sustainable development. In the era of the smart world, semiconductor industry is one of the few global industries that are in a growth mode to smartness, due to worldwide demand. The important opportunities that can boost the cost reduction of productivity and improve quality in wafer fabrication are based on the simulations of actual environment in Cyber-Physical Space and integrate them with decentralized decision-making systems. However, this integration faced the industry with novel unique challenges. The stream of the data from sensors, robots, and Cyber-Physical Space can aid to make the manufacturing smart. Therefore, it would be an increased need for modeling, optimization, and simulation for the value delivery from manufacturing data. This paper aims to review the success story of smart manufacturing in semiconductor industry with the focus on data-enabled decision making and optimization applications based on operations research and data science perspective. In addition, we will discuss future research directions and new challenges for this industry.https://ieeexplore.ieee.org/document/8787825/Cloud computingcyber-physical spacedata scienceIndustry 4.0Internet of Thingsoperations research |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marzieh Khakifirooz Mahdi Fathi Kan Wu |
spellingShingle |
Marzieh Khakifirooz Mahdi Fathi Kan Wu Development of Smart Semiconductor Manufacturing: Operations Research and Data Science Perspectives IEEE Access Cloud computing cyber-physical space data science Industry 4.0 Internet of Things operations research |
author_facet |
Marzieh Khakifirooz Mahdi Fathi Kan Wu |
author_sort |
Marzieh Khakifirooz |
title |
Development of Smart Semiconductor Manufacturing: Operations Research and Data Science Perspectives |
title_short |
Development of Smart Semiconductor Manufacturing: Operations Research and Data Science Perspectives |
title_full |
Development of Smart Semiconductor Manufacturing: Operations Research and Data Science Perspectives |
title_fullStr |
Development of Smart Semiconductor Manufacturing: Operations Research and Data Science Perspectives |
title_full_unstemmed |
Development of Smart Semiconductor Manufacturing: Operations Research and Data Science Perspectives |
title_sort |
development of smart semiconductor manufacturing: operations research and data science perspectives |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2019-01-01 |
description |
With advances in information and telecommunication technologies and data-enabled decision making, smart manufacturing can be an essential component of sustainable development. In the era of the smart world, semiconductor industry is one of the few global industries that are in a growth mode to smartness, due to worldwide demand. The important opportunities that can boost the cost reduction of productivity and improve quality in wafer fabrication are based on the simulations of actual environment in Cyber-Physical Space and integrate them with decentralized decision-making systems. However, this integration faced the industry with novel unique challenges. The stream of the data from sensors, robots, and Cyber-Physical Space can aid to make the manufacturing smart. Therefore, it would be an increased need for modeling, optimization, and simulation for the value delivery from manufacturing data. This paper aims to review the success story of smart manufacturing in semiconductor industry with the focus on data-enabled decision making and optimization applications based on operations research and data science perspective. In addition, we will discuss future research directions and new challenges for this industry. |
topic |
Cloud computing cyber-physical space data science Industry 4.0 Internet of Things operations research |
url |
https://ieeexplore.ieee.org/document/8787825/ |
work_keys_str_mv |
AT marziehkhakifirooz developmentofsmartsemiconductormanufacturingoperationsresearchanddatascienceperspectives AT mahdifathi developmentofsmartsemiconductormanufacturingoperationsresearchanddatascienceperspectives AT kanwu developmentofsmartsemiconductormanufacturingoperationsresearchanddatascienceperspectives |
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