Development of a Model and Performance Analysis of the Characteristics of a Multifunctional Autonomous Unmanned Ground Vehicle


Alexandr D. Batyr K. Aidos K.
2025John Wiley and Sons Ltd

Advances in Materials Science and Engineering
2025#2025Issue 1

This article focuses on a multifunctional autonomous unmanned ground vehicle (MAUGV), aiming to enhance its maneuverability, stability, and obstacle-overcoming capabilities through the development and integration of control systems, sensor fusion, and modular design. The core problem addressed is the integration of autonomous capabilities with operational effectiveness across diverse and challenging environments. By implementing mathematical modeling and prototype testing, motor characteristics are analyzed, and various operational scenarios are simulated to predict the vehicle’s behavior in real-world conditions. Results demonstrated the MAUGV’s ability to tackle obstacles up to specific heights and inclines, highlighting the model’s accuracy in replicating physical dynamics and the vehicle’s potential in challenging environments. These outcomes stem from an examination of drive power, traction characteristics, and cross-country ability, underscoring the model’s utility in enhancing vehicle design and functionality. Additionally, the integration of a bayonet connection for rapid module changes significantly enhances the MAUGV’s adaptability across different missions. The practical implications of this work extend to the development and improvement of autonomous vehicles, offering insights into design considerations that improve adaptability and performance in varied operational contexts. By addressing specific challenges associated with autonomous mobility, the findings contribute to advancing the field, suggesting pathways for future research and application in areas requiring robust, versatile unmanned ground vehicles (UGVs). Copyright

mathematical modeling , motor characteristics , multifunctional , obstacle overcoming , unmanned ground vehicle

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Research Institute, National Defense University, Astana, Kazakhstan
Center for Design and Technological Solutions, Kazakhstan Engineering R&D Center LLP, Astana, Kazakhstan

Research Institute
Center for Design and Technological Solutions

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