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1.
杨成梧  谢小庆 《机器人》1990,12(4):56-59,64
本文研究了双臂机器人的运动学协调问题.双臂机器人在工作过程中,两操作手的运动必须是相互配合的、协调的.本文结合其结构与工作特点.就两手同时抓持一物体运动时,由主动手的运动状态.推导出了从动手在其自身坐标系中的运动状态.  相似文献   

2.
讨论了中医按摩机器人的双臂协调运动控制问题.根据机械臂的结构特点,将空间避碰问题转化为平面内的避碰问题,对按摩机器人双臂推拿过程中可能发生的碰撞情况进行了分析.利用平面几何方法,对机器人双臂协调推拿过程进行了避碰规划,设计出一套双臂协调运动控制策略.利用MATLAB对双臂的避碰情况进行了运动学仿真,仿真结果表明本文中设计的方法可以有效的实现双臂在推拿过程中的协调运动.  相似文献   

3.
双臂机器人系统是当前机器人领域的研究热点,特别是随着单臂机器人在操作能力、控制等方面的局限性不断凸显,最近的研究集中在拥有协调操作能力的冗余双臂机器人.对双臂操作进行分类,然后从双臂协调运动方式、双臂协调控制问题、感知传感器、模仿学习、人机交互五个方面进行分析;综述从运动学、动力学现状入手,分析了双臂协调控制与单臂控制...  相似文献   

4.
冗余度双臂机器人轴孔装配的三维动态仿真与实验   总被引:2,自引:0,他引:2  
周军  丁希仑  陆震 《机器人》2006,28(4):422-427
分析了冗余度双臂机器人进行轴孔装配的运动学约束关系,设计了一种分层递阶控制结构.通过三维图形动态仿真,在冗余度双臂机器人协调控制实验平台上进行了实验.仿真和实验结果表明该方法能够顺利地完成双臂协调插孔的作业.  相似文献   

5.
两协调运动机器人的运动学研究   总被引:1,自引:0,他引:1  
毛祖铁 《机器人》1989,3(5):53-55
某种场合的操作,单个机器人是不可能完成的,必须两个或两个以上机器人协同动作才能完成.例如,搬运一重物,该物体已超过单个机器人的负荷,因此只得使用两个机器人同时夹持重物同时运动(象两人共抬一物一样需要合作),两机器人必须协调合作.那么,如何使它们实现“协同合作”呢? 本文就从运动学角度,用回转变换张量的方法,说明两机器人协调运动的运动学条件.  相似文献   

6.
论文主要研究了双臂机器人的协调运动。建立双臂机器人协调运动模型,根据双臂机器人进行实际任务时的相对位置控制关系,建立一种基于两机械臂协作过程中相对运动的约束协调算法模型,通过和声搜索算法,期望能够根据所得运动最优解增进双臂协调运动过程中的平稳性,并且能够减小仿真过程中的相对误差,保证双臂机器人在进行任务的过程中双臂之间的约束关系。  相似文献   

7.
冗余度机器人操作手的运动灵活性测度   总被引:2,自引:0,他引:2  
傅祥志 《机器人》1989,3(5):35-42
本文在速度水平上讨论了机器人操作手的运动灵活性,根据机器人操作手的运动灵活性完全取决于雅可比矩阵列向量的相关性这一分析,提出用雅可比矩阵的子阵 J_m 的总体相关性指标和相对相关性指标作为机器人操作手的运动灵活性测度,定义了运动灵活性的两个度量指标——绝对灵活度 D_α和相对灵活度 D_r;并论证了绝对灵活度 D_α和可操作度 W,相对灵活度 D_r 和可操作度 W、条件数 K 及最小奇异值σ_m 之间的关系;证明了绝对灵活度 D_α和可操作度 W 的等价性,并给出了可操作度的新的定义.从而全面论证了本文提出的操作手的运动灵活性测度的合理性.  相似文献   

8.
机器人双协调运动的研究概况   总被引:1,自引:0,他引:1  
曲超  陈宁新 《机器人》1991,13(2):59-63
本文综述了机器人双协调运动的研究概况,介绍了运动学和控制两方面的主要研究成果.  相似文献   

9.
针对定基座机器人在复杂环境下作业能力不足的问题,研制出电动力液压四足双臂机器人,将浮动基座与双臂系统的优势有机结合,能够代替人员完成复杂环境下应急处置、工程作业等任务。详细阐述了四足双臂机器人的机械结构、机载电液动力系统、分布式控制系统以及仿真与操作训练平台的设计与实现。提出基于全身虚拟模型的足底力分配方法与足臂协调运动规划方法,实现了躯干浮动基座与双臂系统的联动,大大提升了机器人的作业能力和效率。通过搭建的仿真与操作训练平台完成单臂作业以及双臂协同作业的仿真,验证了所提出控制方法的有效性,并对机器人操作员进行操作训练。在实际样机实验中,测试了单臂抓取以及双臂协同抓取的能力,证明了四足双臂机器人能够满足复杂环境下移动作业的需求。  相似文献   

10.
肢体协调运动康复机器人的机构设计与实验   总被引:1,自引:0,他引:1  
姜礼杰  陈进  王良诣  侯言旭  王勇 《自动化学报》2016,42(12):1808-1818
针对临床上缺少一种肢体协调运动康复训练设备的现状,研制了一款适用于偏瘫患者个性化训练的上下肢协调运动康复机器人.首先,在探究正常步态上下肢协调运动规律的基础上,选择以肩、膝关节角度协调变化规律作为机器人的设计目标;然后,基于五杆变胞机构设计了康复训练机构及主/辅传动链,并对训练机构进行了运动学分析;最后,在样机上进行了实验,结果表明该机器人能够满足设计目标.  相似文献   

11.
Dual-arm redundant robot systems are usually required to handle primary tasks, repetitively and synchronously in practical applications. In this paper, a jerk-level synchronous repetitive motion scheme is proposed to remedy the joint-angle drift phenomenon and achieve the synchronous control of a dual-arm redundant robot system. The proposed scheme is novelly resolved at jerk level, which makes the joint variables, i.e. joint angles, joint velocities and joint accelerations, smooth and bounded. In addition, two types of dynamics algorithms, i.e. gradient-type (G-type) and zeroing-type (Z-type) dynamics algorithms, for the design of repetitive motion variable vectors, are presented in detail with the corresponding circuit schematics. Subsequently, the proposed scheme is reformulated as two dynamical quadratic programs (DQPs) and further integrated into a unified DQP (UDQP) for the synchronous control of a dual-arm robot system. The optimal solution of the UDQP is found by the piecewise-linear projection equation neural network. Moreover, simulations and comparisons based on a six-degrees-of-freedom planar dual-arm redundant robot system substantiate the operation effectiveness and tracking accuracy of the robot system with the proposed scheme for repetitive motion and synchronous control.  相似文献   

12.
该文研究双手协调运动和力控制方法.基于一组面向对象的广义运动和力向量的定义, 考虑对象动力学,建立了面向对象的双手对称协调运动方程,该运动方程显式地表示了对象的 运动、内力及环境接触力与双手关节力矩间的关系.据此设计出广义工作空间一级的双手对 称协调力/位混合控制算法,并解决了算法的分解与并行实现问题.在两台PUMA562机械手 上进行的实验表明,本文研究的方法,可以在双手协调运动过程中实现对被操作对象的运动、 内力和环境接触力的混合控制.  相似文献   

13.
In this paper, the dynamic evolution for a dual-arm space robot capturing a spacecraft is studied, the impact effect and the coordinated stabilization control problem for post-impact closed chain system are discussed. At first, the pre-impact dynamic equations of open chain dual-arm space robot are established by Lagrangian approach, and the dynamic equations of a spacecraft are obtained by Newton-Euler method. Based on the results, with the process of integral and simplify, the response of the dual-arm space robot impacted by the spacecraft is analyzed by momentum conservation law and force transfer law. The closed chain system is formed in the post-impact phase. Closed chain constraint equations are obtained by the constraints of closed-loop geometry and kinematics. With the closed chain constraint equations, the composite system dynamic equations are derived. Secondly, the recurrent fuzzy neural network control scheme is designed for calm motion of unstable closed chain system with uncertain system parameter. In order to overcome the effects of uncertain system inertial parameters, the recurrent fuzzy neural network is used to approximate the unknown part, the control method with $\pmb H_{{\infty }}$ tracking characteristic. According to the Lyapunov theory, the global stability is demonstrated. Meanwhile, the weighted minimum-norm theory is introduced to distribute torques guarantee that cooperative operation between manipulators. At last, numerical examples simulate the response of the collision, and the efficiency of the control scheme is verified by the simulation results.   相似文献   

14.
基于引力自适应步长RRT的双臂机器人协同路径规划   总被引:1,自引:0,他引:1  
李洋  徐达 《机器人》2020,42(5):606-616
快速扩展随机树(RRT)方法的步长确定过分依赖于程序调试,而且固定的步长会导致碰撞检测失效问题.针对此问题,本文提出一种适用于双臂机器人协同路径规划的引力自适应步长RRT.首先,通过建立构型空间与工作空间的步长范数不等式,对双臂机器人在工作空间中所产生的步长进行约束,进而确保实现有效的碰撞检测;然后,提出随机树被动生长方法,在保证双臂机器人协同运动的基础上,降低规划空间的维度.最后,在随机树的节点处引入引力函数,加快算法的融合速度.仿真结果表明,引力自适应步长RRT方法可对工作空间中的步长进行有效约束,确保算法碰撞检测的有效性.在无碰撞的前提下,引力自适应步长RRT方法相比于其他算法减少了迭代次数,降低了运行时间并缩短了路径长度.将所提算法应用于双臂机器人的样机实验,结果表明双臂机器人可在保持位置协同的前提下,完成避障运动,验证了算法的可行性.  相似文献   

15.
The emerging field of service robots demands new systems with increased flexibility. The flexibility of a robot system can be increased in many different ways. Mobile manipulation—the coordinated use of manipulation capabilities and mobility—is an approach to increase robots flexibility with regard to their motion capabilities. Most mobile manipulators that are currently under development use a single arm on a mobile platform. The use of a two-arm manipulator system allows increased manipulation capabilities, especially when large, heavy, or non-rigid objects must be manipulated. This article is concerned with motion control for mobile two-arm systems. These systems require new schemes for motion coordination and control. A coordination scheme called transparent coordination is presented that allows for an arbitrary number of manipulators on a mobile platform. Furthermore, a reactive control scheme is proposed to enable the platform to support sensor-guided manipulator motion. Finally, this article introduces a collision avoidance scheme for mobile two-arm robots. This scheme surveys the vehicle motion to avoid platform collisions and arm collisions caused by self-motion of the robot. © 1996 John Wiley & Sons, Inc.  相似文献   

16.
It is known that the kinematics of a quadruped robot is complex due to its topology and the redundant actuation in the robot. However, it is fundamental to compute the inverse and direct kinematics for the sophisticated control of the robot in real-time. In this paper, the translational crawl gait of a quadruped robot is introduced and the approach to find the solution of the kinematics for such a crawl motion is proposed. Since the resulting kinematics is simplified, the formulation can be used for the real-time control of the robot. The results of simulation and experiment shows that the present method is feasible and efficient.  相似文献   

17.
Dual-arm reconfigurable robot is a new type of robot. It can adapt to different tasks by changing its different end-effector modules which have standard connectors. Especially, in fast and flexible assembly, it is very important to research the collision-free planning of dual-arm reconfigurable robots. It is to find a continuous, collision-free path in an environment containing obstacles. A new approach to the real-time collision-free motion planning of dual-arm reconfigurable robots is used in the paper. This method is based on configuration space (C-Space). The method of configuration space and the concepts reachable manifold and contact manifold are successfully applied to the collision-free motion planning of dual-arm robot. The complexity of dual-arm robots’ collision-free planning will reduce to a search in a dispersed C-Space. With this algorithm, a real-time optimum path is found. And when the start point and the end point of the dual-arm robot are specified, the algorithm will successfully get the collision-free path real time. A verification of this algorithm is made in the dual-arm horizontal articulated robot SCARATES, and the simulation and experiment ascertain that the algorithm is feasible and effective.  相似文献   

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