Minimizing total completion time in large-sized pharmaceutical quality control scheduling

This paper proposes an algorithm for the effective scheduling of analytical chemistry tests in the context of quality control for pharmaceutical manufacturing. The problem is formulated as an extension of a dual resource constrained flexible job shop scheduling problem for the allocation of both mac...

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Published inJournal of heuristics Vol. 29; no. 1; pp. 177 - 206
Main Authors Martins, Miguel S. E., Viegas, Joaquim L., Coito, Tiago, Firme, Bernardo, Costigliola, Andrea, Figueiredo, João, Vieira, Susana M., Sousa, João M. C.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.02.2023
Springer Nature B.V
Subjects
Online AccessGet full text
ISSN1381-1231
1572-9397
DOI10.1007/s10732-023-09509-8

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Abstract This paper proposes an algorithm for the effective scheduling of analytical chemistry tests in the context of quality control for pharmaceutical manufacturing. The problem is formulated as an extension of a dual resource constrained flexible job shop scheduling problem for the allocation of both machines and analysts resources for analytical laboratory work of real dimensions. The formulation is novel and custom made to fit real quality control laboratory. The novelty comes from allowing multiple analyst interventions for each machine allocation while minimising the total completion time, formulated as a mixed integer linear programming model. A three-level dynamic heuristic is proposed to solve the problem efficiently for instances representative of real world schedules. The CPLEX solver and a Tabu Search algorithm are used for comparison. Results show that the heuristic is competitive with the other strategies for medium-sized instances while outperforming them for large-sized instances. The dynamic heuristic runs in a very short amount of time, making it suitable for real world environments. This work is valuable for the development of laboratory management solutions for quality control as it presents a way to provide automatic scheduling of resources.
AbstractList This paper proposes an algorithm for the effective scheduling of analytical chemistry tests in the context of quality control for pharmaceutical manufacturing. The problem is formulated as an extension of a dual resource constrained flexible job shop scheduling problem for the allocation of both machines and analysts resources for analytical laboratory work of real dimensions. The formulation is novel and custom made to fit real quality control laboratory. The novelty comes from allowing multiple analyst interventions for each machine allocation while minimising the total completion time, formulated as a mixed integer linear programming model. A three-level dynamic heuristic is proposed to solve the problem efficiently for instances representative of real world schedules. The CPLEX solver and a Tabu Search algorithm are used for comparison. Results show that the heuristic is competitive with the other strategies for medium-sized instances while outperforming them for large-sized instances. The dynamic heuristic runs in a very short amount of time, making it suitable for real world environments. This work is valuable for the development of laboratory management solutions for quality control as it presents a way to provide automatic scheduling of resources.
Author Coito, Tiago
Costigliola, Andrea
Figueiredo, João
Firme, Bernardo
Sousa, João M. C.
Viegas, Joaquim L.
Martins, Miguel S. E.
Vieira, Susana M.
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Keywords Scheduling
Dual resource constrained scheduling
Quality control laboratory
Heuristics
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Snippet This paper proposes an algorithm for the effective scheduling of analytical chemistry tests in the context of quality control for pharmaceutical manufacturing....
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SubjectTerms Analytical chemistry
Artificial Intelligence
Business competition
Calculus of Variations and Optimal Control; Optimization
Completion time
Heuristic
Integer programming
Job shop scheduling
Laboratories
Linear programming
Management Science
Mathematics
Mathematics and Statistics
Mixed integer
Operations Research
Operations Research/Decision Theory
Pharmaceuticals
Quality control
Resource scheduling
Scheduling
Search algorithms
Tabu search
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Title Minimizing total completion time in large-sized pharmaceutical quality control scheduling
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