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Dynamic wheeled motion control of wheel-biped transformable robots 被引量:1
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作者 Chao Zhang Tangyou Liu +2 位作者 Shuang Song Jiaole Wang Max Q-H.Meng 《Biomimetic Intelligence & Robotics》 2022年第2期1-8,共8页
Most existing biped robots can only walk with their feet or move by wheels.To combine the best of both worlds,this paper introduces the dynamic wheeled control including wheeled locomotion and in-situ wheel-to-foot(Wt... Most existing biped robots can only walk with their feet or move by wheels.To combine the best of both worlds,this paper introduces the dynamic wheeled control including wheeled locomotion and in-situ wheel-to-foot(WtF)transformation of a full-sized wheel-biped transformable robot SR600-II.It can traverse on flat surfaces by wheels and transform to footed stance through its switching modules when facing obstacles.For wheeled locomotion,the kinematics considering upper-body lumped center-of-mass(CoM)constraint is first derived.Then,the dynamics of wheeled locomotion is modeled as a wheeled inverted pendulum(WIP)with variables related to the pose of upper body.After that,a parameter-varying linear quadratic regulator(LQR)controller is utilized to enable dynamic wheeled locomotion.For WtF transformation,the WtF balance constraints are first revealed.Then,a WtF transformation strategy is proposed to tackle the problem when robot transforms from wheeled balance state to in-situ biped stance state.It enables the robot to pass by the transition stages in which both wheels and feet touch the ground and to maintain its balance at the same time.Simulations and experiments on the SR600-II prototype have validated the efficacy of proposed dynamic wheeled control strategies for both wheeled locomotion and in-situ WtF transformation. 展开更多
关键词 wheel-biped transformable robot Dynamic control Wheeled locomotion Parameter-varying LQR control Wheel-to-foot transformation
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表征被动双足行走的二维无边轮辐的动力学及稳定性分析 被引量:1
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作者 奚如如 王兴松 韩亚丽 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2015年第6期1066-1074,共9页
为验证具有被动行走特征的二维无边轮辐稳定极限环的存在,使静止于斜坡上的无边轮辐以不同的初始运动条件开始运动,对其进行运动学及动力学分析,建立表征被动双足行走理论的无边轮辐模型的无碰撞阶段运动方程及碰撞瞬间切换方程.利用庞... 为验证具有被动行走特征的二维无边轮辐稳定极限环的存在,使静止于斜坡上的无边轮辐以不同的初始运动条件开始运动,对其进行运动学及动力学分析,建立表征被动双足行走理论的无边轮辐模型的无碰撞阶段运动方程及碰撞瞬间切换方程.利用庞加莱映射理论进行斜坡上滚动的无边轮辐运动稳定性分析,结果表明,不动点与极限环为轮辐运动稳定性的表征参数,且不动点与极限环的存在与轮辐的辐条数目、惯性矩参数、运动初始条件和斜坡角度有关.利用M ATLAB软件对不动点与极限环的存在进行仿真分析,验证了在一定的斜坡角度和初始运动条件下无边轮辐可实现稳定持续的下坡滚动.基于无边轮辐模型可建立斜坡上行走的无驱动被动双足行走模型,将下坡时由重力提供的驱动力等同于主动驱动力施加到平面上行走的无驱动被动双足行走模型,可以减少驱动能量损耗及简化行走控制理论. 展开更多
关键词 无轮辐轮 被动双足行走 庞加莱映射 不动点 极限环
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