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Autonomous Mobile Robot Selection in Smart Warehouses Considering Cybersecurity and Integration Requirements

  • Melike Cari
  • , Ertugrul Ayyildiz
  • , Mehmet Ali Karabulut
  • , Tolga Kudret Karaca*
  • , Bahar Yalcin Kavus
  • *Corresponding author for this work
  • Karadeniz Technical University
  • Istanbul Topkapi University
  • Izmir Katip Celebi University

Research output: Contribution to journalArticlepeer-review

Abstract

Autonomous mobile robots (AMRs) are increasingly used in warehouse intralogistics to improve material flow, flexibility, productivity, and operational continuity. However, selecting an appropriate AMR is no longer limited to mechanical performance or acquisition cost, since modern warehouse robots operate as networked cyber-physical systems that must interact with enterprise software, fleet management platforms, communication infrastructures, and cybersecurity mechanisms. This study proposes an integrated Pythagorean fuzzy multi-criteria decision-making (MCDM) framework for evaluating AMR alternatives in warehouse operations by jointly considering economic, technical, physical, software-related, integration-oriented, and security-related criteria. Expert judgments obtained from eight specialists, including four academics and four private-sector professionals, were modeled using Pythagorean fuzzy numbers to capture uncertainty and hesitation in linguistic assessments. The Pythagorean Fuzzy Indifference Threshold-Based Attribute Ratio Analysis (PF-ITARA) method was employed to determine criterion weights based on threshold-sensitive discrimination among alternatives, while Pythagorean Fuzzy VI & scaron;ekriterijumsko KOmpromisno Rangiranje (PF-VIKOR) was used to rank four AMR alternatives according to a compromise solution logic. The results show that investment cost, maneuverability, total cost of ownership, integration and validation requirements, and ease of programming and commissioning are the most influential criteria. Cybersecurity-related criteria, particularly data confidentiality, system integrity, monitoring and incident response readiness, authentication control, and role-based access control, also received notable importance levels. Among the evaluated alternatives, MiR250 achieved the best overall performance and emerged as the most suitable compromise solution, followed by OMRON LD-250, HIKROBOT Forklift AGV, and KUKA KMP 600-S diffDrive. The proposed framework provides a transparent and practically applicable decision-support tool for AMR procurement by integrating operational performance, digital interoperability, and cybersecurity readiness into a unified evaluation structure.
Original languageEnglish
Article number5095
Number of pages22
JournalApplied Sciences (Switzerland)
Volume16
Issue number10
Early online dateMay 2026
DOIs
Publication statusPublished - 20 May 2026

Keywords

  • AMR selection
  • Autonomous mobile robots
  • Cybersecurity
  • Pf-itara
  • Pf-vikor
  • Pythagorean fuzzy sets
  • System integration
  • Warehouse intralogistics

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