1. 中国科学院 沈阳自动化研究所机器人学国家重点实验室, 辽宁 沈阳 110016
2. 中国科学院 机器人与智能制造创新研究院, 辽宁 沈阳 110169
3. 中国科学院大学, 北京 100049
4. 沈阳航天新光集团有限公司, 辽宁 沈阳 110041
5. 中煤科工集团沈阳研究院有限公司 煤矿安全技术国家重点实验室, 辽宁 抚顺 113122
*wangting@sia.cn
收稿:2022-09-14,
纸质出版:2023-02-10
移动端阅览
姜祎, 王挺, 邵沛瑶, 等. 一种轮腿复合型机器人的步态研究与越障性能分析[J]. 兵工学报, 2023,44(1):247-259.
Yi JIANG, Ting WANG, Peiyao SHAO, et al. Gait Study and Obstacle-Surmounting Performance Analysis of a Wheel-Leg Hybrid Robot[J]. Acta Armamentarii, 2023, 44(1): 247-259.
姜祎, 王挺, 邵沛瑶, 等. 一种轮腿复合型机器人的步态研究与越障性能分析[J]. 兵工学报, 2023,44(1):247-259. DOI: 10.12382/bgxb.2022.0823.
Yi JIANG, Ting WANG, Peiyao SHAO, et al. Gait Study and Obstacle-Surmounting Performance Analysis of a Wheel-Leg Hybrid Robot[J]. Acta Armamentarii, 2023, 44(1): 247-259. DOI: 10.12382/bgxb.2022.0823.
为实现地面移动机器人在复杂地形下的环境探索需求
结合轮式机器人的高速特性和足式机器人对地形适应性强的特征
提出一种轮幅型轮腿复合型机器人
并针对其在移动过程中的振动问题以及爬梯过程中的越障问题
对机器人进行步态研究及性能分析。从静力学分析中得出机器人轮腿结构以不同姿态着地时的受力情况
结合实际情况中机器人运动约束对机器人在前进、转向和越障等任务中的步态进行分析
并基于动力学仿真ADAMS软件建立动力学模型来模拟机器人不同步态下的振动情况以及越障性能。研究结果表明
结合本文提出的步态控制方法
该轮腿复合型机器人在复杂地形环境中具有较好的行进效率和越障能力。
In order for ground mobile robots to fulfil the requirements of environmental exploration in complex terrain
considering the high speed characteristic of wheeled robots and the strong environmental adaptability of legged robots
a wheel-leg hybrid robot is proposed. To address the vibration problem in moving and the obstacle surmounting problem in ladder climbing
the gait study and performance analysis of the robot are carried out. The force conditions of the wheel-leg structure of the robot in different landing postures are obtained from the static analysis
and combined with the motion constraints in the actual situation
the robot gaits in the tasks of moving forward
turning and obstacle-surmounting are analyzed. Then
with the ADAMS simulation software
the dynamic model is established to simulate the robot vibration and obstacle-surmounting performance in different gaits. The results show that combined with the proposed gait control method
the wheel-leg hybrid robot has better traveling efficiency and obstacle surmounting ability in complex terrain environment.
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王琪 , 张秀丽 , 江磊 , 等 . 具有2DOF铰接式躯干的仿猎豹四足奔跑机器人 [J ] . 机器人 , 2022 , 44 ( 3 ): 257 - 266 . DOI: 10.13973/j.cnki.robot.210101 http://doi.org/10.13973/j.cnki.robot.210101 为了探索脊柱运动对腿运动的增强机理,设计了具有2自由度铰接式躯干的仿猎豹四足奔跑机器人。对带腾空相的跳跃(bound)步态奔跑运动的力学过程进行描述,采用阻尼型弹性负载倒立摆(D-SLIP)模型建立了四足机器人动力学模型。依据猎豹的奔跑运动模式,对四足机器人脊柱关节与腿关节的耦合运动进行了轨迹规划。提出一种改进的粒子群优化(PSO)算法,解决了机器人脊柱关节驱动机构尺寸和运动轨迹控制参数之间目标互斥的嵌套优化问题。对四足机器人跳跃奔跑运动进行动力学仿真,结果表明:脊柱与腿的协调运动可以增大奔跑步幅,使机器人产生腾空相,从而提高机器人的奔跑速度。
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曲梦可 , 王洪波 , 荣誉 . 军用轮 、 腿混合四足机器人设计 [J ] . 兵工学报 , 2018 , 39 ( 4 ): 787 - 797 . DOI: 10.3969/j.issn.1000-1093.2018.04.019 http://doi.org/10.3969/j.issn.1000-1093.2018.04.019 为设计一种可以在迈步行走、有动力轮式机动、无动力轮旱冰式滑行3种运动方式之间灵活转换的轮、腿混合四足机器人,提出一种采用3-PUPS机构的超冗余、可变胞并联机械腿,其构型可以通过伺服电机的抱闸锁定实现变胞变换,从而使机械腿能根据任务需求实时改变自身构型和性能。在建立机械腿3-PUPS机构的运动学和静力学模型基础上,通过定义运动学和静力学性能评价指标,分析了机械腿尺寸参数对其各性能评价指标的影响规律,从而确定机械腿一组使机械腿运动学和静力学性能较为均衡的结构参数,并研制出机械腿的实验样机。建立轮、腿混合四足机器人整机的通用运动学模型,定义机器人整机的性能评价指标,分析机器人整机尺寸参数对其各性能评价指标的影响规律,并确定整机尺寸参数值,在此基础上完成了轮、腿混合四足机器人整机的设计方案。通过一套专用机器人标定系统对机械腿的实验样机进行位姿测量实验。研究结果表明:机械腿运动平台的实际运动沿x轴方向最大偏差为0.041 mm,沿y轴方向最大偏差为0.040 mm,沿 z轴方向最大偏差为0.040 mm;绕z轴姿态角最大偏差为0.041°,绕y轴姿态角最大偏差为0.043°,绕x轴姿态角最大偏差为0.045°;机械腿实验样机达到了通用式工业机器人的精度水平。
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