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On multi-objective multi-coverage covering salesman problem

  • 31-10-2025
  • Optimization
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Abstract

The article delves into the multi-objective multi-coverage covering salesman problem (MOMC-CSP), a complex optimization challenge with wide-ranging applications in logistics, supply chain management, and operations research. It begins with an introduction to the problem, highlighting its significance and various real-world applications, such as humanitarian relief, supply chain optimization, and surveillance systems. The literature review section provides a comprehensive overview of existing methodologies for solving the CSP, categorizing them based on their solution approaches, including heuristics, metaheuristics, and exact methods. The article then introduces a new algorithm based on the NSGA-II framework, designed to address the MOMC-CSP by maximizing overall coverage value and minimizing tour length. The methodology section details the design of new genetic operators and the representation of chromosomes, ensuring compatibility with the problem's requirements. The experimentation section presents the results of solving 34 instances for three datasets from TSPLIB, demonstrating the algorithm's effectiveness in achieving maximum coverage value for most instances. The conclusion summarizes the findings and suggests potential future research directions, such as considering imprecise problem parameters and budget constraints. This article offers a valuable contribution to the field by providing a robust algorithm for solving the MOMC-CSP and highlighting its practical applications.

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Title
On multi-objective multi-coverage covering salesman problem
Authors
Amiya Biswas
Erfan Babaee Tirkolaee
Lakshmi Narayan De
Vincent F. Yu
Tandra Pal
Publication date
31-10-2025
Publisher
Springer Berlin Heidelberg
Published in
Soft Computing / Issue 23-24/2025
Print ISSN: 1432-7643
Electronic ISSN: 1433-7479
DOI
https://doi.org/10.1007/s00500-025-10925-0
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