首页 /研究 /Minimum-energy translational trajectory planning for battery-powered three-wheeled omni-directional mobile robots
OTHER

Minimum-energy translational trajectory planning for battery-powered three-wheeled omni-directional mobile robots

Hongjun Kim, Byung-Kook Kim

发表年份
2008
引用次数
27

摘要

The minimum-energy translational trajectory planning algorithm is proposed for battery-powered three-wheeled omni-directional mobile robots (TOMRs). We have chosen a practical cost function as the total energy drawn from the batteries, in order to lengthen the operational time of a mobile robot with given batteries. After establishing the dynamic equations of TOMRs, the optimal control theory is used to solve the minimum-energy trajectory, which gives the velocity profile in analytic form. Various simulations are performed and the consumed energy is compared to other velocity trajectories. Simulation results reveal that the energy saving is achieved of up to 2.4% compared with loss-minimization control, and up to 4.3% compared with conventional trapezoidal velocity profile.

关键词

Mobile robotTrajectoryBattery (electricity)Energy (signal processing)Control theory (sociology)RobotComputer scienceMotion planningFunction (biology)Simulation

相关论文

查看 OTHER 分类全部论文