Minimizing Total Weighted Late Work in a Proportionate Flow Shop with Job Rejection

Author:

Chen Ren-Xia1,Li Shi-Sheng1,Feng Qi1

Affiliation:

1. School of Mathematics and Information Science, Zhongyuan University of Technology, Zhengzhou 450007, People’s Republic of China

Abstract

In this paper, we investigate a scheduling problem with optional job rejection in a proportionate flow shop setting, where the job processing times are machine independent. A solution to our problem is characterized by (i) partitioning the set of jobs into a set of accepted jobs and a set of rejected jobs, and (ii) scheduling the accepted jobs in a proportionate flow shop setting. The aim is to find a solution to minimize the sum of total weighted late work of the accepted jobs and total rejection cost of the rejected jobs. When all jobs share a common due date, we show that the single-machine case is [Formula: see text]-hard by reduction from the Subset Sum problem. When the operations of all jobs have equal processing times, we solve the case in [Formula: see text] time by reducing it into a linear assignment problem. For the general problem, we first provide a pseudo-polynomial-time algorithm via the dynamic programming method, then we convert it into a fully polynomial time approximation scheme. As a byproduct, we also resolve an open question in the literature.

Funder

Key Research Projects of Henan Higher Education Institutions

IRTSTHN

Chongqing Municipal Science and Technology Commission of Natural Science Fund Projects

Chongqing Education Commission Natural Science Fund key Projects

Publisher

World Scientific Pub Co Pte Ltd

Subject

Management Science and Operations Research,Management Science and Operations Research

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