基于遗传算法的两轮延伸杆车辆的建模与控制,一种基于拉格朗日的动力学方法

K. Goher, M. Tokhi
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引用次数: 7

摘要

本文利用遗传算法作为一种优化技术,设计并实现了一种PID控制算法,用于新型两轮加长杆车辆的设计。车辆设计提供了一个额外的功能,传统的倒立摆在两个轮子上。车辆的中间体(IB)由两个同轴部件组成,通过线性执行器连接,并在上部末端附加有效载荷。线性执行器允许有效载荷沿着车辆的IB上下移动。考虑到车辆携带的不同位置、速度和不同大小的有效载荷,同时保持整个车辆的平衡是当前研究的主要挑战。系统的动力学建模是基于利用拉格朗日公式来驱动系统的运动方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic algorithm based modeling and control of a two wheeled vehicle with an extended rod, a Lagrangian based dynamic approach
This work carries out design and implementation of a PID control algorithm utilizing genetic algorithm as an optimization technique for a novel design of a two-wheeled vehicle with an extended rod. The vehicle design offers an additional feature to the conventional inverted pendulum on two wheels. The intermediate body (IB) of the vehicle is composed of two co-axial parts connected by a linear actuator and with a payload attached to the end of the upper part. The linear actuator allows the payload to move up and down along the IB of the vehicle. Considering the various positions, speeds and different sizes of a payload, carried by the vehicle, while maintaining the entire vehicle balanced is the main challenge of the current study. Dynamic modeling of the system is based on utilizing Lagrangian formulation to drive the system equations of motion.
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