滑倒
控制(管理)
波浪和浅水
环境科学
计算机科学
地质学
工程类
人工智能
海洋学
机械工程
作者
Hongyu Lan,Yongchen Han,Weichao Wu,Shaojie Wang,Chen Bai,Haotian Shen
标识
DOI:10.1109/icrae59816.2023.10458465
摘要
Unmanned tracked vehicles have a crucial role in clearing unexploded ordnance in shallow water areas; however, underwater sludge can lead to track slippage. The tracked vehicle necessitates superior anti-slip performance for operations in such conditions. This paper initially formulates a comprehensive dynamic model of the tracked vehicle founded on environmental characteristics. Subsequently, it devises a Fuzzy-PID controller aimed at diminishing the tracked vehicle's slip rate during motion. The motion model of the tracked vehicle is established using the Recurdyn environment. The Fuzzy-PID controller is implemented within the MATLAB/Simulink environment. The control strategy is validated through the collaborative simulation of Recurdyn and MATLAB/Simulink. Two scenarios, encompassing flat and uneven road surfaces, are introduced to substantiate the control strategy's efficacy. Simulation outcomes demonstrate the effectiveness of the suggested Fuzzy-PID control strategy in stabilizing the slip rate. These findings furnish an empirical foundation for the stable underwater operation of tracked vehicles.
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