[1]冯志友,李永刚,张策,等.并联机器人机构运动与动力分析研究现状及展望[J].中国机械工程, 2006,17(9):979-984.
FENG Zhiyou, LI Yonggang, ZHANG Ce, et al. Present State and Perspectives of Research on Kinematics and Dynamics of Parallel Manipulators[J]. China Mechanical Engineering,2006,17(9):979-984.
[2]刘辛军,吴超,汪劲松,等.[PP]S类并联机器人机构姿态描述方法[J].机械工程学报,2008,44(10):19-23.
LIU Xinjun, WU Chao, WANG Jinsong, et al. Attitude Description Method of[PP]S Type Parallel Robotic Mechanisms[J]. Journal of Mechanical Engineering, 2008,44(10):19-23.
[3]STEWART D. A Platform with Six Degrees of Freedom[J]. Proceedings of the Institution of Mechanical Engineers,1965,180(1):371-386.
[4]MCCANN C M, DOLLAR A M. Design of a Stewart Platform-inspired Dexterous Hand for 6-DOF Within-hand Manipulation[C]∥IEEE/RSJ International Conference on Intelligent Robots and Systems. Vancouver, 2017:1158-1163.
[5]AGINAGA J, ZABALZA I, ALTUZARRA O, et al. Improving Static Stiffness of the 6-R_US Parallel Manipulator Using Inverse Singularities[J]. Robotics and Computer Integrated Manufacturing, 2012, 28(4):458-471.
[6]HE Bin, XU Shoulin, ZHOU Yanmin, et al. Mobi-lity Properties Analyses of a Wall Climbing Hexapod Robot[J]. Journal of Mechanical Science and Technology,2018,32(3):1333-1344.
[7]FENG Jin, GAO Feng, ZHAO Xianchao, et al. A New Macro-micro Dual Drive Parallel Robot for Chromosome Dissection[J]. Journal of Mechanical Science and Technology,2012,26(1):187-194.
[8]CECCARELLI M, OTTAVIANO E. A Workspace Evaluation of an Eclipse Robot[J]. Robotica,2002,20(3):299-313.
[9]郭宗和,杜晴晴,杨启志.新型3-PRRS并联机构的位置正反解分析[J].中国机械工程,2015,26(4):451-455.
GUO Zonghe, DU Qingqing, YANG Qizhi. Forward and Inverse Position Kinematics Analysis of a New 3-PRRS Parallel Mechanism[J]. China Mechanical Engineering,2015,26(4):451-455.
[10]郭宗和,朱松松,崔荣江,等.3-PRPS并联机构的位置正解及应用研究[J].中国机械工程,2013,24(23):3220-3224.
GUO Zonghe, ZHU Songsong, CUI Rongjiang, et al. Research on Forward Position and Application of 3-PRPS Parallel Mechanism[J]. China Mechanical Engineering,2013,24(23):3220-3224.
[11]冯祥文,金振林,高峰,等.3-URS并联机器人位置分析[J].机械传动,2008, 32(5):30-32.
FENG Xiangwen, JIN Zhenlin, GAO Feng, et al. Position Analysis of 3-URS Parallel Robot[J]. Mechanical Transmission,2008, 32(5):30-32.
[12]NAG A, MOHAN S, BANDYOPADHYAY S. Forward Kinematic Analysis of the 3-RPRS Parallel Manipulator[J]. Mechanism and Machine Theory,2017,116:262-272.
[13]CHABLAT D, OTTAVIANO E, VENKATESW-ARAN S. Self-motion Conditions for a 3-PPPS Parallel Robot with Delta-shaped Base[J]. Mechanism and Machine Theory,2019,135:109-114.
[14]COPPOLA G, ZHANG D, LIU K. A 6-DOF Reconfigurable Hybrid Parallel Manipulator[J]. Robotics and Computer Integrated Manufacturing, 2014,30(2):99-106.
[15]袁泉.喷浆机器人工作空间的性能指标[J].山东大学学报(工学版),2002,32(2):197-198.
YUAN Quan. The Function Target of Workspace of Spray Robot[J]. Journal of Shandong University (Engineering Science), 2002, 32(2):197-198.
[16]SALISBURY J K, CRAIG J J. Articulated Hands[J]. The International Journal of Robotics Research,1982, 1(1):4-17.
[17]PATEL S, SOBH T. Manipulator Performance Measures:a Comprehensive Literature Survey[J]. Journal of Intelligent & Robotic Systems,2015,77(3/4):547-570.
[18]崔国华,李权才,张艳伟,等.空间转动4-SPS-1-S型并联机构动力学性能指标分析[J].农业机械学报,2010,41(7):214-218.
CUI Guohua, LI Quancai, ZHANG Yanwei, et al. Dynamic Performance Indices Analysis of 4-SPS-1-S Spatial Rotation Parallel Manipulator[J]. Transactions of the Chinese Society for Agricultural Machinery, 2010, 41(7):214-218.
[19]ZHANG Dan, GAO Zhen. Hybrid Head Mechanism of the Groundhog-like Mine Rescue Robot[J]. Robotics and Computer Integrated Manufacturing,2010,27(2):460-470.
[20]刘辛军,谢福贵,汪劲松.并联机器人机构学基础[M].北京:高等教育出版社,2018:169-174.
LIU Xinjun, XIE Fugui, WANG Jinsong. Fundamental of Parallel Robotic Mechanisms[M]. Beijing:Higher Education Press, 2018:169-174.
[21]XIE Fugui, LIU Xinjun, WANG Jinsong. A 3-DOF Parallel Manufacturing Module and Its Kinematic Optimization[J]. Robotics and Computer Integrated Manufacturing,2012,28(3):334-343.
[22]鹿玲,张东胜,许允斗,等.五自由度混联机器人尺度与结构优化设计[J].农业机械学报,2018,49(4):412-419.
LU Ling, ZHANG Dongsheng, XU Yundou, et al. Dimension and Structure Optimization Design of 5-DOF Hybrid Manipulator[J].Transactions of the Chinese Society for Agricultural Machinery, 2018, 49(4):412-419.
[23]LI Xuerong, LIU Jingmeng, CHEN Weihai, et al. Integrated Design, Modeling and Analysis of a Novel Spherical Motion Generator Driven by Electromagnetic Principle[J]. Robotics and Autonomous Systems, 2018, 106:68-81.
[24]ZHANG G, DU J, TO S. Study of the Workspace of a Class of Universal Joints[J]. Mechanism and Machine Theory,2014,73:244-258.
[25]MIRSHEKARI E, GHANBARZADEH A, SHIRAZI K H. Structure Comparison and Optimal Design of 6-RUS Parallel Manipulator Based on Kinematic and Dynamic Performances[J]. Latin American Journal of Solids and Structures,2016,13(13):2414-2438.
[26]HANSEN J A, GUPTA K C, KAZEROUNIAN S M K. Generation and Evaluation of the Workspace of a Manipulator[J]. The International Journal of Robotics Research,1983,2(3):22-31.
[27]LI Xuerong, LIU Jingmeng, CHEN Weihai, et al. Analytical Magnetics and Torque Modeling of a Multi-layer Electromagnetic Driven Spherical Motion Generator[J]. Journal of Magnetism and Magnetic Materials,2020,493:165707.
[28]顾明,黄剑.建筑模型风洞试验阻塞效应研究进展[J].同济大学学报(自然科学版),2016,44(1):1-10.
GU Ming, HUANG Jian. Research Progress of Wind Tunnel Blockage Effect on Building Models[J]. Journal of Tongji University (Natural Science),2016,44(1):1-10.
[29]董金刚,魏忠武,赵星宇,等.基于并联机构构型的新型CTS试验技术[J].空气动力学学报,2020,38(5):932-937.
DONG Jingang, WEI Zhongwu, ZHAO Xingyu, et al. A Novel Parallel Mechanism-based CTS Test Technique for the Wind Tunnel[J]. Chinese Journal of Aerodynamics, 2020,38(5):932-937.
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