An Improved Metaheuristic Algorithm for On-site Workshop Availability Cost Problem

Fuente: arXiv
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Main Authors: Boroujeni, Niloufar Mirzavand, Moradi, Nima
Format: Preprint
Published: 2025
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author Boroujeni, Niloufar Mirzavand
Moradi, Nima
author_facet Boroujeni, Niloufar Mirzavand
Moradi, Nima
contents The Multi-mode Resource Availability Cost Problem (MRACP) optimizes resource availability to minimize usage costs and is a recent project scheduling problem variant. The Multi-Mode On-Site Workshop Availability Cost Problem (MOSWACP) extends MRACP by introducing spatial constraints for On-site Workshops (OSWs) at construction sites. MOSWACP aims to determine the optimal availability level, installation, and dismantling times for OSWs while scheduling activities within spatial and resource limitations. A novel Mixed-Integer Linear Programming (MILP) model is developed, and a metaheuristic algorithm, the Electron Radar Search Algorithm (ERSA), is proposed to solve large-scale instances. ERSA, enhanced with problem-specific operators, outperforms CPLEX in large instances and outperforms Simulated Annealing (SA), Genetic Algorithm (GA), and Particle Swarm Optimization (PSO). An actual case study demonstrated significant cost savings using the proposed model. The results and conclusions highlight the effectiveness of the ERSA approach in managing complex project scheduling challenges.
format Preprint
id arxiv_https___arxiv_org_abs_2501_02494
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle An Improved Metaheuristic Algorithm for On-site Workshop Availability Cost Problem
Boroujeni, Niloufar Mirzavand
Moradi, Nima
Optimization and Control
The Multi-mode Resource Availability Cost Problem (MRACP) optimizes resource availability to minimize usage costs and is a recent project scheduling problem variant. The Multi-Mode On-Site Workshop Availability Cost Problem (MOSWACP) extends MRACP by introducing spatial constraints for On-site Workshops (OSWs) at construction sites. MOSWACP aims to determine the optimal availability level, installation, and dismantling times for OSWs while scheduling activities within spatial and resource limitations. A novel Mixed-Integer Linear Programming (MILP) model is developed, and a metaheuristic algorithm, the Electron Radar Search Algorithm (ERSA), is proposed to solve large-scale instances. ERSA, enhanced with problem-specific operators, outperforms CPLEX in large instances and outperforms Simulated Annealing (SA), Genetic Algorithm (GA), and Particle Swarm Optimization (PSO). An actual case study demonstrated significant cost savings using the proposed model. The results and conclusions highlight the effectiveness of the ERSA approach in managing complex project scheduling challenges.
title An Improved Metaheuristic Algorithm for On-site Workshop Availability Cost Problem
topic Optimization and Control
url https://arxiv.org/abs/2501.02494