Implementation of a leader-follower controller for a skid-steering wheel-legged robot

Luc Xuan Tu Phung, I. Sharf, B. Beckman
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引用次数: 4

Abstract

In this paper, we present a leader-follower controller for the Micro-Hydraulic Toolkit (MHT), a skid-steering wheel-legged robot designed by Defence Research and Development Canada - Suffield Research Centre. The objective of the controller is to maneuver the MHT towards a desired position with respect to a designated leader. Using the range and bearing of the leader from the robot, the leader-follower controller computes the desired wheel velocities of the MHT to achieve leader-follower formation control. In addition to performing wheeled locomotion to follow the leader, the MHT is capable of using its legs to reconfigure its posture. Thus, moving beyond standard implementations, the leader-follower control strategy presented in this paper is combined with a velocity-based inverse kinematics controller developed in previous work to control the posture of the MHT during leader-follower maneuvers. The results of the leader-follower scenarios implemented in simulation and on the physical MHT demonstrate the robot's ability to execute leader-follower formation control and posture control simultaneously, adding to the versatility of the vehicle to negotiate uneven terrains.
滑转向轮腿机器人先导-跟随控制器的实现
本文介绍了由加拿大国防研究与发展-萨菲尔德研究中心设计的滑转向轮腿机器人微液压工具包(MHT)的一种领导-跟随控制器。管制员的目标是操纵MHT相对于指定的领导者向期望的位置移动。leader-follower控制器利用机器人leader的距离和方位,计算出MHT的期望轮速,实现leader-follower的编队控制。除了进行轮式运动来跟随领导者,MHT还能够使用它的腿来重新配置它的姿势。因此,超越标准实现,本文提出的领导者-追随者控制策略与先前工作中开发的基于速度的逆运动学控制器相结合,以控制领导者-追随者机动期间MHT的姿态。在模拟和物理MHT上实施的领导者-追随者场景的结果表明,机器人能够同时执行领导者-追随者编队控制和姿态控制,增加了车辆在不平坦地形上的多功能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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