Improved algorithms for proportionate flow shop scheduling with due-window assignment

In a recent study, Sun et al. (AOR 292:113–131, 2020) studied due-window proportionate flow shop scheduling problems with position-dependent weights. For common due-window (denoted by CONW) and slack due-window (denoted by SLKW) assignment methods, they proved that these two problems can be solved i...

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Vydáno v:Annals of operations research Ročník 309; číslo 1; s. 249 - 258
Hlavní autoři: Qian, Jin, Han, Haiyan
Médium: Journal Article
Jazyk:angličtina
Vydáno: New York Springer US 01.02.2022
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Springer Nature B.V
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ISSN:0254-5330, 1572-9338
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Abstract In a recent study, Sun et al. (AOR 292:113–131, 2020) studied due-window proportionate flow shop scheduling problems with position-dependent weights. For common due-window (denoted by CONW) and slack due-window (denoted by SLKW) assignment methods, they proved that these two problems can be solved in O ( n 2 log n ) time respectively, where n is the number of jobs. In this paper, we consider the same problems, and our contribution is that the CONW problem can be optimally solved by a lower-order algorithm, which runs in O ( n log n ) time, implying an improvement of a factor of n .
AbstractList In a recent study, Sun et al. (AOR 292:113–131, 2020) studied due-window proportionate flow shop scheduling problems with position-dependent weights. For common due-window (denoted by CONW) and slack due-window (denoted by SLKW) assignment methods, they proved that these two problems can be solved in O ( n 2 log n ) time respectively, where n is the number of jobs. In this paper, we consider the same problems, and our contribution is that the CONW problem can be optimally solved by a lower-order algorithm, which runs in O ( n log n ) time, implying an improvement of a factor of n .
In a recent study, Sun et al. (AOR 292:113–131, 2020) studied due-window proportionate flow shop scheduling problems with position-dependent weights. For common due-window (denoted by CONW) and slack due-window (denoted by SLKW) assignment methods, they proved that these two problems can be solved in O(n2logn) time respectively, where n is the number of jobs. In this paper, we consider the same problems, and our contribution is that the CONW problem can be optimally solved by a lower-order algorithm, which runs in O(nlogn) time, implying an improvement of a factor of n.
In a recent study, Sun et al. (AOR 292:113-131, 2020) studied due-window proportionate flow shop scheduling problems with position-dependent weights. For common due-window (denoted by CONW) and slack due-window (denoted by SLKW) assignment methods, they proved that these two problems can be solved in [Formula omitted] time respectively, where n is the number of jobs. In this paper, we consider the same problems, and our contribution is that the CONW problem can be optimally solved by a lower-order algorithm, which runs in [Formula omitted] time, implying an improvement of a factor of n.
Audience Academic
Author Han, Haiyan
Qian, Jin
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Issue 1
Keywords Scheduling
Due-window assignment
Position-dependent weights
Proportionate flow shop
Algorithm complexity
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Snippet In a recent study, Sun et al. (AOR 292:113–131, 2020) studied due-window proportionate flow shop scheduling problems with position-dependent weights. For...
In a recent study, Sun et al. (AOR 292:113-131, 2020) studied due-window proportionate flow shop scheduling problems with position-dependent weights. For...
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SubjectTerms Algorithms
Business and Management
Combinatorics
Job shop scheduling
Job shops
Machine shops
Management
Methods
Operations research
Operations Research/Decision Theory
Original Research
Scheduling
Scheduling (Management)
Theory of Computation
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Title Improved algorithms for proportionate flow shop scheduling with due-window assignment
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