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Optimizing Vehicle Operations through Integer Linear Programming: A Peruvian Case Study

  • Ríos Cáceres Fabrizio
  • , Mallqui Salvador James
  • , Cardenas Torres Oscar
  • , Corrales Colque Jean
  • , Ávila Tribeño Leonardo
  • , Ninaquispe Soto Mario
  • , Tipismana Neyra Marco
  • , Pasco Barriga Blanca
  • Universidad Nacional Tecnológica De Lima Sur
  • Universidad Privada del Norte

Research output: Contribution to journalConference articlepeer-review

Abstract

The paper concerns with an optimal operational planning for a fleet of All-Terrain Vehicles (ATVs) servicing the adventure tourism sector. Integer Linear Programming (ILP) and Deterministic Dynamic Programming based full model (DDP) is presented to address the problems of resource allocation, route planning, and maintenance scheduling in "Cuatri Pachacamac"peruvian company. The goal is to optimize gain and keep the system operational. The ILP model focuses on maximizing the monthly net profit including variable costs (fuel, maintenance and salaries) and capacity constraints of fleet. The results show a 21.7% increase in profitability, from an empirical profit of S/. 2300.00 to S/. 2799.10, using only 8 of the 22 available units efficiently. The DDP approach validates the sustainability of medium-term decisions by integrating preventive maintenance into weekly planning. It is concluded that the application of Operations Research tools is essential for transforming empirical processes into profitable and sustainable systems.

Original languageEnglish
Pages (from-to)1240-1246
Number of pages7
JournalProcedia Computer Science
Volume280
DOIs
StatePublished - 2026
Event17th International Conference on Ambient Systems, Networks and Technologies Networks, ANT, 9th International Conference on Emerging Data and Industry 4.0, EDI40 - Istanbul, Turkey
Duration: 14 Apr 202616 Apr 2026

Keywords

  • Adventure Tourism
  • Dynamic Programming
  • Fleet Management
  • Integer Linear Programming
  • Operating Costs
  • Optimization

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