运动规划
移动机器人
非完整系统
MATLAB语言
计算机科学
协同仿真
路径(计算)
机器人
模拟
人工智能
操作系统
程序设计语言
作者
Aggrey Shitsukane,Calvins Otieno,James Obuhuma,Lawrence Mukhongo,Samuel Kariuki
出处
期刊:Global Journal of Engineering and Technology Advances
[GSC Online Press]
日期:2025-04-13
卷期号:23 (1): 006-019
被引量:2
标识
DOI:10.30574/gjeta.2025.23.1.0076
摘要
Simulation plays a vital role in the design, testing, and validation of autonomous mobile robot navigation systems, particularly when real-world experimentation is constrained by cost, safety, or logistical limitations. This paper presents a modular and scalable co-simulation framework integrating MATLAB and CoppeliaSim for the path planning of nonholonomic wheeled mobile robots in static environments. The framework leverages MATLAB’s computational and fuzzy logic capabilities for controller development, while CoppeliaSim provides a physics-based 3D simulation environment for modeling robot kinematics, sensing, and interaction with obstacles. Communication between the two platforms is achieved via the CoppeliaSim Remote API, enabling real-time data exchange for closed-loop control. The system supports dynamic sensor feedback, customizable fuzzy inference systems, and visual monitoring of robot behavior. To validate the framework, a case study involving a fuzzy logic controller for obstacle avoidance was conducted, with performance evaluated based on traversal time and path efficiency. Results demonstrate that the framework provides a reliable, flexible, and low-cost alternative to physical prototyping for early-stage development and testing of autonomous navigation algorithms.
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