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October 12, 2025El-Cezeri Fen ve Mühendislik Dergisi2 citationsOpen Access

Multicamera-Based Indoor Localization and Path Optimization for Mobile Robots Using ArUco Markers

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ASAbdulhamit SEVGİHKHasan Erdinç Koçer

Key Points

  • The proposed method improves indoor localization in mobile robots, enhancing navigation accuracy using visual markers.
  • By utilizing multiple cameras, the system addresses alignment issues while calculating optimal paths to targets.
  • A combination of ArUco markers and image processing ensures seamless integration and effective localization.
  • This technique could significantly enhance applications in both industrial and service sectors, promoting operational efficiency.

Abstract

Abstract : In indoor environments where GPS signals are unavailable, determining mobile robot positions is challenging. Common methods include SLAM, marker-based localization, inertial measurement units (IMUs), and hybrid positioning systems (HPS). SLAM enables simultaneous localization and mapping, while marker-based localization uses specific markers for position detection. IMUs track motion via velocity, acceleration, and angular velocity, and HPS combines sensors for improved accuracy. This study develops a route planning and motion optimization method using ArUco markers from the University of Córdoba. Detected via image processing, these markers guide robots by calculating the shortest and safest paths to targets. Multiple cameras enhance motion range and vision, while an automatic pan adjustment addresses overlaps and alignment issues, ensuring seamless image integration. The proposed method demonstrates the potential of multi-camera systems for reliable indoor navigation, offering promising applications in industrial and service domains.

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Cite This Study

SEVGİ et al. (2025) studied this question.

synapsesocial.com/papers/68ebe3d6becc64ad52fdae0dhttps://doi.org/10.31202/ecjse.1614568
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