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机器人臂手系统动力学建模研究 被引量:1
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作者 朱勇 周思跃 《机械与电子》 2008年第3期60-63,共4页
利用基于旋量的开链机器人动力学方法分别建立了手臂和灵巧手的动力学模型,并推导了各关节所受外力的通用方程,然后根据两者的运动学和力学关系将2个模型结合成为一个整体。利用违约校正的方法解决了动力学数值积分中的误差累计问题,并... 利用基于旋量的开链机器人动力学方法分别建立了手臂和灵巧手的动力学模型,并推导了各关节所受外力的通用方程,然后根据两者的运动学和力学关系将2个模型结合成为一个整体。利用违约校正的方法解决了动力学数值积分中的误差累计问题,并将机器人臂手系统动力学模型用于机器人臂手系统三维仿真环境,取得了较好的效果。 展开更多
关键词 机器人臂手系统 旋量理论 动力学 违约校正
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机器人臂/手仿真系统操作物体的研究 被引量:1
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作者 燕兰泉 周思跃 《机电工程》 CAS 2009年第5期4-8,共5页
为了研究机器人臂/手仿真系统对物体的操作,首先对机器人臂/手系统和物体进行了运动学建模,然后利用建好的机器人臂/手仿真系统,基于机器人臂/手系统的运动学、静力学,实现了右手拿杯倒水、手指拧、斜抛球等操作,最后探讨了机器人臂/手... 为了研究机器人臂/手仿真系统对物体的操作,首先对机器人臂/手系统和物体进行了运动学建模,然后利用建好的机器人臂/手仿真系统,基于机器人臂/手系统的运动学、静力学,实现了右手拿杯倒水、手指拧、斜抛球等操作,最后探讨了机器人臂/手操作物体时,机器人臂关节力矩对灵巧手指端力的影响。实验结果表明,该模型具有建模方便、适用于大部分机器人臂/手系统和利于计算机求解等特点。 展开更多
关键词 机器人/系统 /的操作 运动学 静力学
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虚拟现实技术在机器人臂/灵巧手遥操作中的应用 被引量:9
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作者 胡海鹰 李家炜 +2 位作者 王滨 王捷 刘宏 《系统仿真学报》 CAS CSCD 2004年第10期2305-2308,共4页
将虚拟现实技术应用机器人臂/灵巧手遥操作系统中,完成了环境建模、人-机接口、精确的图形碰撞检测和抓握稳定性分析,并实现了对虚拟环境中模型的实时误差校正。利用该虚拟现实系统,结合视觉反馈和力反馈,完成了按按钮、拉抽屉、抓握灯... 将虚拟现实技术应用机器人臂/灵巧手遥操作系统中,完成了环境建模、人-机接口、精确的图形碰撞检测和抓握稳定性分析,并实现了对虚拟环境中模型的实时误差校正。利用该虚拟现实系统,结合视觉反馈和力反馈,完成了按按钮、拉抽屉、抓握灯泡等遥操作任务。 展开更多
关键词 虚拟现实 遥操作 机器人/灵巧系统 模型误差校正
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Mechanism Design of Palletizing Robot Based on Translating Cam Principle
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作者 李方义 马石磊 +1 位作者 何洋 徐庆钟 《Transactions of Tianjin University》 EI CAS 2012年第6期465-470,共6页
Palletizing robot technology has been applied more and more extensively in logistics automation field.But there are some limitations in the current single-arm palletizing robot that it cannot do effective work in the ... Palletizing robot technology has been applied more and more extensively in logistics automation field.But there are some limitations in the current single-arm palletizing robot that it cannot do effective work in the process of moving back to the taking-end and the mechanical arm has so many freedoms that its control system is relatively complex.Based on the translating cam principle,a novel palletizing robot is designed.The horizontal movement of the palletizing mechanical arm is controlled by changeable outer slides,and the vertical movement is controlled by partitioned up-and-down spindles.To improve palletizing efficiency,the single palletizing mechanical arm is changed into multi-arm.Moreover,to improve its kinematic properties,the acceleration operating performance,joint driving force and palletizing trajectory are optimized through the multi-objective delaminating sequence method.According to the optimization results,the 3D model of the multi-arm palletizing robot is built in Pro/E,and the kinematic simulation is made.The simulation results show that the novel mechanism and optimization parameters are rational and feasible.This novel palletizing robot has the advantages of cam mechanism,so it simplifies the driving mode of palletizing movement and can lower the requirements for controlling system.At the same time,it can increase palletizing efficiency further by adding mechanical arms. 展开更多
关键词 palletizing robot partitioned translating cam mechanism multi-objective optimization kinematic simulation multi-ann
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System design of a dexterous lightweight robot arm with remote control
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作者 Li Tian Sun Kui Jiang Zainan Xie Zongwu Liu Hong 《High Technology Letters》 EI CAS 2012年第3期248-255,共8页
This paper presents a novel remote controlled dexterous robot arm with 6 degrees of freedom (DOF). As a highly integrated mechatronics system, sensors and their signal processing system are integrated inside each jo... This paper presents a novel remote controlled dexterous robot arm with 6 degrees of freedom (DOF). As a highly integrated mechatronics system, sensors and their signal processing system are integrated inside each joint. To lighten the weight, almost all mechanical parts are made of aluminum and the robot control system is placed outside. The modular concept is adopted during the robot design process for time and cost saving. Considering the much greater torque acted on the two shoulder joints, the joint shells are strengthened in the design to increase joint stiffness and suppress system vibration. Meanwhile, to simplify the maintenance, a new spring pins electronic connector is designed to disassemble every joint, connector and link independently without cutting any cables. The teleoperation technology enables the robot to offer more convenient service definitely for people' s daily life. Virtual reality technology is used to solve the time delay problem during teleoperation. Finally, two typical daily chore experiments are implemented to prove the manipulation ability of the dexterous robot arm. 展开更多
关键词 dexterous robot arm LIGHTWEIGHT modular joint virtual reality l multisensory ca-pability
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