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偏心轮腿六足机器人四足步态规划 被引量:2
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作者 万婷 王宇俊 +1 位作者 李君科 何新强 《河南教育学院学报(自然科学版)》 2011年第4期41-44,共4页
提出了一种适用于偏心轮腿六足机器人的直行四足步态规划.以一个运动周期为例,分析了偏心轮腿六足机器人直行过程中5个阶段的运动状态,以及每个运动状态中偏心轮腿步态的参数变化并用状态矩阵加以描述.将该步态用于所设计的偏心轮腿六... 提出了一种适用于偏心轮腿六足机器人的直行四足步态规划.以一个运动周期为例,分析了偏心轮腿六足机器人直行过程中5个阶段的运动状态,以及每个运动状态中偏心轮腿步态的参数变化并用状态矩阵加以描述.将该步态用于所设计的偏心轮腿六足机器人,在驱动电机的控制下,能保证机器人的直行前进. 展开更多
关键词 偏心轮腿六机器人 规划 运动状 矩阵 四足步态
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六足机器人爬楼步态的力学仿真分析 被引量:4
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作者 曹雏清 熊一帆 《现代制造工程》 CSCD 北大核心 2019年第10期40-44,共5页
为提高六足机器人对楼梯障碍物的适应能力,设计一种半圆形腿式的六足机器人。根据机器人的结构特点,规划了六足机器人爬楼梯中的四足步态。基于机器人柔性体半圆形腿的结构特点,采用ANSYS软件和ADAMS软件对其进行了联合仿真,建立半圆形... 为提高六足机器人对楼梯障碍物的适应能力,设计一种半圆形腿式的六足机器人。根据机器人的结构特点,规划了六足机器人爬楼梯中的四足步态。基于机器人柔性体半圆形腿的结构特点,采用ANSYS软件和ADAMS软件对其进行了联合仿真,建立半圆形腿的柔性体模型,对其进行运动仿真并进行了应力应变和模态分析。仿真结果表明:六足机器人结构设计合理,验证了柔性体半圆形腿选材和电机选型的正确性,为进一步进行机器人系统结构与误差的分析奠定了基础。 展开更多
关键词 机器人 四足步态 仿真 应力应变 分析
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基于稳定阈度分析的外骨骼动态步长规划方法 被引量:9
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作者 陈春杰 张邵敏 +2 位作者 王灿 吴桂忠 吴新宇 《仪器仪表学报》 EI CAS CSCD 北大核心 2017年第3期523-529,共7页
在医疗领域,康复外骨骼机器人能够帮助下肢瘫痪的患者重新行走,因此得到广泛的关注。由于下肢截瘫患者身体的特殊性,针对该类患者使用的外骨骼机器人大多使用拐杖作为平衡辅助工具。在固定步长的情况下,不同的拐杖支撑点位置,会很大程... 在医疗领域,康复外骨骼机器人能够帮助下肢瘫痪的患者重新行走,因此得到广泛的关注。由于下肢截瘫患者身体的特殊性,针对该类患者使用的外骨骼机器人大多使用拐杖作为平衡辅助工具。在固定步长的情况下,不同的拐杖支撑点位置,会很大程度影响步行稳定阈度。通过分析穿戴者拄拐步态所形成的多边形支撑面,利用零力矩点(ZMP)理论计算相应的压力中心位置,从而得到四足步态的稳定阈度表达式;并在此基础上提出动态调整步长的方法,得到拐杖支撑点与步长的拟合曲面,对步长进行实时、适当调整;最后通过外骨骼机器人的运动学模型,规划相应的步态轨迹。通过在课题组自主研发的外骨骼机器人样机上进行大量对比实验,证明了在每个步态周期中,针对不同的拐杖支撑位置,提出的方法可以有效增加系统步态的稳定阈度,降低拐杖支撑点的随机性对系统稳定性的影响。 展开更多
关键词 康复外骨骼机器人 规划 四足步态
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Dynamic stability of quadruped robot walking on slope with trot gait 被引量:3
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作者 雷静桃 Ren Mingming 《High Technology Letters》 EI CAS 2016年第1期1-9,共9页
The dynamic stability of a quadruped robot trotting on slope was analyzed.Compared with crawl gait,trot gait can improve walking speed of quadruped robots.When a quadruped robot trots,each leg is in the alternate stat... The dynamic stability of a quadruped robot trotting on slope was analyzed.Compared with crawl gait,trot gait can improve walking speed of quadruped robots.When a quadruped robot trots,each leg is in the alternate state of swing phase or supporting phase,and two legs in the diagonal line are in the same phase.The feet in the supporting phase form a supporting region on the ground.When a quadruped robot walks on slope,the vertical distance from zero moment point(ZMP) to the supporting diagonal line is defined as ZMP offset distance.Whether this distance is less than the maximum offset distance or not,the stability of robot trotting on slope can be judged.The foot trajectory was planned with the sinusoidal function.Based on the kinematic analysis,the ZMP offset distance of quadruped robot under different slope angles,step length and step height was calculated,then the reasonable slope angle,step length and step height for quadruped robot trotting on slope to keep dynamic stability can be determined.On the other hand,the posture angle of quadruped robot should be controlled within the desired range.Computer simulations were executed to verify the theoretical analysis.The study will provide reference for determining reasonable step parameters of the quadruped robot. 展开更多
关键词 quadruped robot SLOPE trot gait STABILITY zero moment point (ZMP)
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Wheeled foot quadruped robot HITAN-I 被引量:2
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作者 王鹏飞 Sun Lining 《High Technology Letters》 EI CAS 2006年第4期346-350,共5页
In view of the robot running environment, the structure of wheeled foot and quadruped are adopted in this robot system, which combines the priorities of both wheeled robot and legged robot. Based on CAN bus, the two-c... In view of the robot running environment, the structure of wheeled foot and quadruped are adopted in this robot system, which combines the priorities of both wheeled robot and legged robot. Based on CAN bus, the two-class robot control system using multiple controllers and drivers is constructed. At the same time, serial inverse kinematics of swaying leg and parallel inverse kinematics of supporting legs are analyzed independently. The forward gait and turning gait are planned and experiment image is given at last. 展开更多
关键词 wheeled foot ROBOT control system gait planning
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Study on the musculoskeletal body for quadruped robots with spinning gait 被引量:2
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作者 雷静桃 Yu Huangying 《High Technology Letters》 EI CAS 2015年第3期245-252,共8页
The walking creatures' athletic ability is related to their body' s musculoskeletal system.A kind of musculoskeletal body for quadruped robots is developed,which will be used to assist the leg mechanism to ach... The walking creatures' athletic ability is related to their body' s musculoskeletal system.A kind of musculoskeletal body for quadruped robots is developed,which will be used to assist the leg mechanism to achieve spinning gait in order to improve the robot mobility in unstructured environment.A bionic-flexible-spine model driven by pneumatic artificial muscles(PAMs) is proposed.Because the body has the flexible property,the robot can achieve spinning gait quickly,which is similar to walking creatures by coordinated movement between body bending and legs side-swing.The kinematics of the bending of the musculoskeletal body and side-swing of leg mechanism of quadruped robot for spinning gait are studied.According to the stability analysis of spinning gait,the relationship between body bending angle and leg swing angle can be determined.The PID controller is designed to conduct the bending experiment,and the bending characteristic of the musculoskeletal body is studied.Experimental results show that the biggest bending angle of the musculoskeletal body can reach 30°. 展开更多
关键词 quadruped robot musculoskeletal body spinning gait flexible spine pneumaticartificial muscles (PAMs)
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