Faculty Profile of Chi-Tai Wang

Chi-Tai Wang (Director)

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Job Title Associate Professor
Degree Ph.D. in Industrial Engineering, University of Michigan, USA
Specialization Supply Chain Management, Renewable Energy and Sustainable Development, Semiconductor Industry, Applications of Operations Research
Research Room 管二館 733-1 / 分機 66667
Office Hour 每週二 14:30~16:30
Email ctwang@mgt.ncu.edu.tw
Research Lab
Supply Chain Management and Industry Dynamics Research Lab
NCU Official Website
https://scholars.ncu.edu.tw/zh/persons/chi-tai-wang

Research Achievements
  • Journal Article
  • Conference Paper
  • Books and Other Publications
  • Projects
  • 陳杰楠*,王啓泰(2024)。我國電動車產業之研究趨勢。華人經濟研究,第二十二卷,第一期,39–58頁。
  • 許燕福*,王啓泰(2023)。台灣印刷電路板產業的再生能源運用策略。華人經濟研究,第二十一卷,第一期,99–108頁。
  • Trihardani L, Wang C-T*, Hsieh Y-J (2022). Making optimal location-sizing decisions for deploying hybrid renewable energy at B&Bs. Applied Sciences, 12, 6087.
  • Liao M-H*, Wang C-T (2021). Using enterprise architecture to integrate lean manufacturing, digitalization, and sustainability: A lean enterprise case study in the chemical industry. Sustainability, 13, 4851.
  • Nguyen V C, Wang C-T*, Hsieh Y-J (2021). Electrification of highway transportation with solar and wind energy. Sustainability, 13, 5456.
  • Chou H-H, Wang C-T*, Sheu R-S (2016). A practical multiple-tool-set approach for increasing agile response in overhaul production with limited resource requirement visibility. International Journal of Industrial Engineering 23(2), 119-136.
  • Wang C-T*, Su S-J (2015). Strategic capacity planning for light emitting diode (LED) supply chains across Taiwan and China. Journal of the Operational Research Society, 66(12), 1989-2003.
  • Milne R J*, Wang C-T, Denton B T, Fordyce K (2015). Incorporating contractual arrangements in production planning. Computers & Operations Research, 53, 353-363.
  • Milne R J*, Mahapatra S, Wang C-T (2015). Optimizing planned lead times for enhancing performance of MRP systems. International Journal of Production Economics, 167, 220-231.
  • Fordyce K*, Milne R J, Wang C-T, Zisgen H (2015). Modeling and integration of planning, scheduling, and equipment configuration in semiconductor manufacturing part I: Review of successes and opportunities. International Journal of Industrial Engineering, 22(5), 575-600.
  • Fordyce K*, Milne R J, Wang C-T, Zisgen H (2015). Modeling and integration of planning, scheduling, and equipment configuration in semiconductor manufacturing part II: Fab capability assessment. International Journal of Industrial Engineering, 22(5), 601-617.
  • Wang C-T*, Chiu C-S (2014). Competitive strategies for Taiwan's semiconductor industry in a new world economy. Technology in Society, 36, 60-73.
  • Milne R J, Wang C-T* (2014). Enhancing mathematical programming models to account for demand priorities increasing as a function of delivery date. Journal of Industrial and Production Engineering, 31(1), 51-63.
  • Degbotse A, Denton B, Fordyce K, Milne R J, Orzell R, Wang C-T (2013). IBM blends heuristics and optimization to plan its semiconductor supply chain. Interfaces, 43(2), 130-141.
  • Bozer Y A, Wang C-T* (2012). A graph-pair representation and MIP-model-based heuristic for the unequal-area facility layout prob-lem. European Journal of Operational Research, 218(2), 382-391.
  • Milne R J*, Wang C-T, Yen C-K A, Fordyce K (2012). Optimized material requirements planning for semiconductor manufacturing. Journal of the Operational Research Society, 63(11), 1566-1577.
  • Hsieh Y-J*, Huang L-Y, Wang C-T (2012). A framework for the se-lection of Six Sigma projects in services: case studies of banking and health care services in Taiwan. Service Business, 6(2), 243-264.
  • Wang C-T*, Fordyce K, Milne R J, Orzell R (2008). The IBM advanced planning system for managing next generation demand-supply networks. International Journal of Integrated Supply Management, 4(1), 125-140.
  • Wang C-T* (2017). Identifying an optimally configured solar/wind power system for buildings. The 21st Conference of the International Federation of Operational Research Societies (Quebec City, Canada).
  • Wang C-T*, Chiu C-S (2014). Sustainable management of Taiwan's semiconductor supply chain. Proceedings of the Asia Pacific Industrial Engineering & Management Systems Conference 2014 (Jeju Island, South Korea).
  • Milne R J, Wang C-T* (2014). Incorporating dynamic relative importance into LP and MIP models. IIE Annual Conference & Expo (Montreal, Canada).
  • Wang C-T* (2013). Strategic supply network planning with order fulfillment modes. Proceedings of the 14th Asia Pacific Industrial Engineering and Management Systems Conference (Cebu, Philippines).
  • Wang C-T*, Lin G, Hung C P (2011). A preliminary study of applying "Design-Chain Operations Reference-model" (DCOR) to collaborate substrate designs. Joint Symposium of e-Manufacturing and Design Collaboration 2011 and International Symposium on Semiconductor Manufacturing 2011 (Hsinchu, Taiwan).
  • Bozer Y A, Wang C-T* (2010). A graph-pair representation and MIP-model-based heuristic for the unequal-area facility layout problem. Proceedings of the 40th International Conference on Computers and Industrial Engineering (Awaji Island, Japan): 1-6.
  • Wang C-T*, Milne R J (2009). Advanced material requirements planning systems for semiconductor manufacturing at IBM. The Eighth International Conference on Information and Management Sciences, Kunming & Banna (China).
  • Fordyce K, Wang C-T, Chang C-H, Degbotse A, Denton B, Lyon P, Milne R J, Orzell R, Rice R and Waite J (2011). Chapter 14 The Ongoing Challenge: Creating an Enterprise-Wide Detailed Supply Chain Plan for Semiconductor and Package Operations, Planning Production and Inventories in the Extended Enterprise: A State of the Art Handbook, vol. 2 (pp. 313-387), edited by Kempf, Keskinocak and Uzsoy, Springer (International Series in Operations Research & Management Science, vol. 152).
Year Project Name Project Funding Granting Institution
111 晶圓重組部生產管理專業人才培訓計畫 354,378

同欣電子工業股份有限公司龍科分公司

110 晶圓重組生產排程作業優化及產品標準工時維護計畫 442,000

同欣電子工業股份有限公司龍科分公司

109 晶圓重組部生產管理專才培訓計畫 328,000

同欣電子工業股份有限公司

107 基板部生產作業標準工時量測與維護計畫 350,000

同欣電子工業股份有限公司

107 iOS (Intelligent and Optimal Scheduling) 75,000

南亞科技股份有限公司

106 IOS (Intelligent and Optimal Scheduling) 計劃 162,500

南亞科技股份有限公司

105 一般建物採用最新太陽能與風力混合發電科技之策略規劃 339,000

科技部

105 iOS (Intelligent and Optimal Scheduling) 162,000

南亞科技股份有限公司

104 提升企業流程效率專案 60,000

鴻璿股份有限公司

104 製造管理系統(電子看板)與倉庫揀貨效率流程改善專案 54,000

台灣瀧澤科技股份有限公司

102 同時考慮「顧客需求日期」及「製造商承諾日期」之 LED 供應鏈策略性產能規劃 528,000

國科會

100 提升台灣半導體產業供應鏈協同設計能力 550,000

資策會

99 全球運籌規劃顧問服務專案(延伸計畫) 120,000

聯合通商電子商務股份有限公司

99 全球運籌規劃顧問服務專案 120,000

聯合通商電子商務股份有限公司

98 運用數學規劃、圖形、以及啟發式演算法來規劃多期廠房設施 528,000

國科會

97 運用數學規劃、圖形、以及啟發式演算法來規劃廠房設施 563,000

國科會

Course Information

  • Operations Research I

    Operations Research is a core quantitative methods course in the field of Industrial Management. The objectives of this course are to:

    • Teach the skills for developing mathematical models,
    • Introduce algorithms for finding the optimal solutions to these models, and
    • Demonstrate how to apply information technology to solve these models effectively.

  • Renewable Energy & Sustainable Development

    Climate change and global warming have posed a serious threat to the planet. The objectives of this course are to:

    • Teach the Earth sciences related to global warming,
    • Provide knowledge and technology on renewable energy, and
    • Develop strategies for planning the installation of renewable energy facilities in buildings or road networks.

  • Sustainable Development & Corporate Social Responsibility

    Climate change and global warming have posed a serious threat to the planet. The objectives of this course are to:

    • Teach the Earth sciences related to global warming,
    • Provide knowledge and technology on renewable energy, and
    • Develop strategies for planning the installation of renewable energy facilities in buildings or road networks.

  • Supply Chain Management

    Supply chain management has become a critical core competency for businesses since the 1990s. This course covers topics including:

    • The evolution of supply chains,
    • Key issues and challenges in supply chain management,
    • Basic mathematical models, and
    • Sustainable supply chains.