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Research paper | Open Access

Multitasking Capabilities of an Autonomous quad-Arm Mobile Manipulator (qAMM) for Smart City Operations

Ravinesh Chand*, ( )Sandeep A. Kumar Bibhya Sharma Ronal P. Chand* 
School of Mathematical & Computing Sciences, Fiji National University, Fiji
School of Information Technology, Engineering, Mathematics & Physics, The University of the South Pacific, Fiji

This paper was recommended for publication in its revised form by editorial board member, Bayu Jayawardhana.

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Abstract

Additional robotic arms on a mobile manipulator invariably enhance its multi-tasking capabilities and offer greater flexibility in performing multiple complex operations. This paper presents a four-arm or quad-arm car-like mobile manipulator (qAMM) that can address the issue of labor shortage in emerging smart city operations that require multi-tasking such as garbage collection, construction, maintenance, and cleaning. Lyapunov-based acceleration controllers are derived and utilized to solve the proposed mobile manipulator’s motion planning and control problem. First, a dual-step algorithm is used to move the car-like base in an obstacle-ridden environment from an initial position to its pseudo-target and, second, maneuver the four end-effectors to their designated targets and enable qAMM to perform multiple tasks through the synchronous and asynchronous motion of its revolute links. Furthermore, by using the Direct Method of Lyapunov and LaSalle’s invariance principle, stability and convergence analyses of the four-arm car-like system have been proved. Finally, the effectiveness of the proposed approach and qAMM’s acceleration-based motion controllers is verified by computer simulations.

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Unmanned Systems
Pages 481-503

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Cite this article:
Chand R, Kumar SA, Sharma B, et al. Multitasking Capabilities of an Autonomous quad-Arm Mobile Manipulator (qAMM) for Smart City Operations. Unmanned Systems, 2026, 14(2): 481-503. https://doi.org/10.1142/S2301385026500123

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Received: 12 May 2024
Revised: 30 January 2025
Accepted: 01 February 2025
Published: 26 May 2025
© World Scientific Publishing Company

This is an Open Access article published by World Scientific Publishing Company. It is distributed under the terms of the Creative Commons Attribution 4.0 (CC BY) License which permits use, distribution and reproduction in any medium, provided the original work is properly cited.