In the robotic community more and more hands are developed. Based on theexperience of HIT Hand and DLR Hand II, a smaller and easier manufactured dexterous robot hand withmultisen-sory function and high integration is...In the robotic community more and more hands are developed. Based on theexperience of HIT Hand and DLR Hand II, a smaller and easier manufactured dexterous robot hand withmultisen-sory function and high integration is jointly developed. The prototype of the hand issuccessfully built. It has 4 fingers in total 13-DOFs (degree of freedom). Each finger has 3-DOFsand 4 joints, the last 2 joints are mechanically coupled by means of four-bar linkage mechanism. Italso has an additional DOF to realize motion of the thumb relative to the palm. The fingertip forcecan reach up to 10 N. Full integration of mechanical body, actuation system, multisensory system andelectronics is a significant feature. DSP based control system is implemented in PCI busarchitecture and the serial communication between the hand and DSP needs only 2 lines.展开更多
为了对连杆空间力矩传感器进行动态补偿,提出了适用于求取串联机器人任意连杆中任意一点处所受的内力和内力矩的算法.该算法采用连杆假想截断原理利用牛顿-欧拉方程推导而出.推导过程综合考虑了串联机器人是否处于静态以及末端是否受外...为了对连杆空间力矩传感器进行动态补偿,提出了适用于求取串联机器人任意连杆中任意一点处所受的内力和内力矩的算法.该算法采用连杆假想截断原理利用牛顿-欧拉方程推导而出.推导过程综合考虑了串联机器人是否处于静态以及末端是否受外力作用的情况,以及串联机器人的关节是否是回转关节的情况.然后利用该算法计算动态补偿值,构建了基于连杆力矩传感器动态补偿的笛卡儿阻抗控制器.最后在HIT/DLR Hand II五指灵巧手上进行了实验验证.实验结果一方面验证了该算法的有效性,另一方面也验证了本文所构建的笛卡儿阻抗控制器的有效性.展开更多
为开发高度集成的五指机器人灵巧手,提出了采用DSP(Digital Signal Processor)+FPGA(Field Programmable Gate Array)控制结构的模块化嵌入式手指控制系统设计方法。实现了采用单电流传感器检测全桥控制下相电流及相电流过流双保护。为...为开发高度集成的五指机器人灵巧手,提出了采用DSP(Digital Signal Processor)+FPGA(Field Programmable Gate Array)控制结构的模块化嵌入式手指控制系统设计方法。实现了采用单电流传感器检测全桥控制下相电流及相电流过流双保护。为解决手指DSP和FPGA之间如何稳定、高效通信的难题,结合先进先出FIFO(First In First Out)寄存器,设计了基于串行通信接口SCI(Serial Communications Interface)和RS485总线的多中断差分通信系统。实验证明,这种DSP+FPGA控制结构及模块化的设计,使得手指控制部分得以高度集成,同时DLR/HITII灵巧手获得很好的整体性能和稳定性。展开更多
文摘In the robotic community more and more hands are developed. Based on theexperience of HIT Hand and DLR Hand II, a smaller and easier manufactured dexterous robot hand withmultisen-sory function and high integration is jointly developed. The prototype of the hand issuccessfully built. It has 4 fingers in total 13-DOFs (degree of freedom). Each finger has 3-DOFsand 4 joints, the last 2 joints are mechanically coupled by means of four-bar linkage mechanism. Italso has an additional DOF to realize motion of the thumb relative to the palm. The fingertip forcecan reach up to 10 N. Full integration of mechanical body, actuation system, multisensory system andelectronics is a significant feature. DSP based control system is implemented in PCI busarchitecture and the serial communication between the hand and DSP needs only 2 lines.
文摘为了对连杆空间力矩传感器进行动态补偿,提出了适用于求取串联机器人任意连杆中任意一点处所受的内力和内力矩的算法.该算法采用连杆假想截断原理利用牛顿-欧拉方程推导而出.推导过程综合考虑了串联机器人是否处于静态以及末端是否受外力作用的情况,以及串联机器人的关节是否是回转关节的情况.然后利用该算法计算动态补偿值,构建了基于连杆力矩传感器动态补偿的笛卡儿阻抗控制器.最后在HIT/DLR Hand II五指灵巧手上进行了实验验证.实验结果一方面验证了该算法的有效性,另一方面也验证了本文所构建的笛卡儿阻抗控制器的有效性.
文摘为开发高度集成的五指机器人灵巧手,提出了采用DSP(Digital Signal Processor)+FPGA(Field Programmable Gate Array)控制结构的模块化嵌入式手指控制系统设计方法。实现了采用单电流传感器检测全桥控制下相电流及相电流过流双保护。为解决手指DSP和FPGA之间如何稳定、高效通信的难题,结合先进先出FIFO(First In First Out)寄存器,设计了基于串行通信接口SCI(Serial Communications Interface)和RS485总线的多中断差分通信系统。实验证明,这种DSP+FPGA控制结构及模块化的设计,使得手指控制部分得以高度集成,同时DLR/HITII灵巧手获得很好的整体性能和稳定性。