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An exact quadratic programming approach based on convex reformulation for seru scheduling problems

  • Zhe Zhang
  • , Xiaoling Song
  • , Xue Gong
  • , Yong Yin
  • , Benjamin Lev
  • , Xiaoyang Zhou
  • Nanjing University of Science and Technology
  • Doshisha University
  • Drexel University

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

Motivated by a practical production scheduling problem at a factory, this article studies scheduling problems in seru production system (SPS). Seru is a relatively new-type production mode originating in Japan and has brought inspiring benefits to production practice. Following the just-in-time philosophy of SPS, the objective of seru scheduling problem is to minimize the sum of earliness and tardiness penalties. Two common due date types of job are considered, and the seru scheduling problem is formulated as a 0–1 quadratic programming model with linear constraints that is then reformulated using convex reformulation methods to ensure convexity. Computational experiments are implemented. Experimental results indicate that the proposed exact solution method can obtain approximate optimal solutions efficiently and effectively for seru scheduling problems.

Original languageEnglish
Pages (from-to)1096-1107
Number of pages12
JournalNaval Research Logistics
Volume69
Issue number8
DOIs
StatePublished - Dec 2022

Keywords

  • earliness and tardiness
  • just-in-time
  • non-convex optimization
  • nonlinear programming
  • production revolution

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