Yutian Wang, Jiahao Qiu, Jun Wu, and Jinsong Wang
[1] J. Wu, B. Zhang, L. Wang, and G. Yu, An iterative learningmethod for realizing accurate dynamic feedforward controlof an industrial hybrid robot, Science China TechnologicalSciences, 64(6), 2021, 1177–1188. [2] Z.-Y. Li, D.-J. Zhao, and J.-S. Zhao, Structure synthesis andworkspace analysis of a telescopic spraying robot, Mechanismand Machine Theory, 133, 2019, 295–310. [3] R.-J. Guo and J.-S. Zhao, Topological principle of strengthenedconnecting frames in the stretchable arm of an industry coatingrobot, Mechanism and Machine Theory, 114, 2017, 38–59. [4] J. Wu, H. Ye, G. Yu, and T. Huang, A novel dynamic evaluationmethod and its application to a 4-DOF parallel manipulator,Mechanism and Machine Theory, 168, 2022, 104627. [5] D. Zhang, Q. Zou, S. Guo, and H.B. Qu, Kinematics andperformances analysis of a novel hybrid welding robot, In-ternational Journal of Robotics & Automation, 35(4), 2020,261–268. [6] G. Kanagaraj, S.A.R.S. Masthan, and V.F. Yu, Inverse kine-matic solution of obstacle avoidance redundant robot manip-ulator by bat algorithms, International Journal of Robotics &Automation, 36(1), 2021, 18–26. [7] M. Madhu, S.P. Kumar, S. Shriram, and R. Vignesh, ACCD-based inverse kinematics approach using Frenet-Serretparameterization for SHR manipulators, International Journalof Robotics & Automation, 36(3), 2021, 140–147.959 [8] J. Choi, K. Kim, and H.Y. Kim, Kinetics and multibodydynamics simulation of parallel delta robot, InternationalJournal of Robotics & Automation, 36(5), 2021, 292–303. [9] Y.-L. Lai, C.-C. Liao, Z.-G. Chao, Inverse kinematics for anovel hybrid parallel serial five-axis machine tool, Robotics andComputer-Integrated Manufacturing, 50, 2018, 63–79. [10] J. Wu, J. Wang, and Z. You, An overview of dynamic parameteridentification of robots, Robotics and Computer-IntegratedManufacturing, 26(5), 2010, 414–419. [11] G.K. Singh and J. Claassens, An analytical solution for theinverse kinematics of a redundant 7-DoF manipulator withlink offsets, IEEE/RSJ 2010 International Conference onIntelligent Robots and Systems (IROS 2010), 2010, 2976–2982. [12] M.V. Weghe, D. Ferguson, and S.S. Srinivasa, Randomizedpath planning for redundant manipulators without inverse kine-matics, 7th IEEE-RAS International Conference on HumanoidRobots, 2007, 477–482. [13] D. Berenson, S.S. Srinivasa, D. Ferguson, A. Collet, and J. J.Kuffner, Manipulation planning with workspace goal regions,ICRA: 2009 IEEE International Conference on Robotics andAutomation, 2009, 1397–1403. [14] M. Crenganis, M. Tera, C. Biris, and C. Girjob, Dynamicanalysis of a 7 DOF robot using fuzzy logic for inverse kine-matics problem, 7th International Conference on InformationTechnology and Quantitative Management, 2019, 298–306. [15] C. Faria, F. Ferreira, W. Erlhagen, S. Monteiro, and E.Bicho, Position-based kinematics for 7-DoF serial manipulatorswith global configuration control, joint limit and singularityavoidance, Mechanism and Machine Theory, 121, 2018, 317–334. [16] P. Dahm and F. Joublin, Closed form solution for the in-verse kinematics of a redundant robot arm, Computer AidedGeometric Design, 2016, 163–171. [17] H. Moradi and S. Lee, Joint limit analysis and elbow movementminimization for redundant manipulators using closed formmethod, International Conference on Intelligent Computing,2005, 423–432. [18] J. Wang, Y. Li, and X. Zhao, Inverse kinematics and controlof a 7-dof redundant manipulator based on the closed-loopalgorithm, International Journal of Advanced Robotic Systems,7(4), 2010, 1–9. [19] W.W. Gan and S. Pellegrino, Numerical approach to thekinematic analysis of deployable structures forming a closedloop, Proceedings of the Institution of Mechanical EngineersPart C-Journal of Mechanical Engineering Science, 220(7),2006, 1045–1056. [20] S. Kucuk and Z. Bingul, The inverse kinematics solutionsof fundamental robot manipulators with offset wrist, IEEEInternational Conference on Mechatronics (ICM), 2005, 197–202. [21] J. Zhao, T. Xu, Q. Fang, Y. Xie, and Y. Zhu, A syntheticinverse kinematic algorithm for 7-DOF redundant manipulator,Proceedings of 2018 IEEE International Conference on Real-Time Computing and Robotics (IEEE RCAR), 2018, 112–117. [22] R.V. Dubey, J.A. Euler, and S.M. Babcock, An efficientgradient projection optimization scheme for a seven-degree-of-freedom redundant robot with spherical wrist, Proceedingsof the 1988 IEEE International Conference on Robotics andAutomation (CAT. No.88CH2555-1), 1988, 1, 28–36. [23] O. Khatib, Inertial properties in robotic manipulation: anobject-level framework, The International Journal of RoboticsResearch, 13(1), 1995, 13–36. [24] S. Tadokoro, I. Kimura, and T. Takamori, A measure forevaluation of dynamic dexterity based on a stochastic interpre-tation of manipulator motion, Fifth International Conferenceon Advanced Robotics, Pisa, Italy, 1991, 509–514. [25] K. Hu, J. Zhang, Y. Dong, and D. Wu, Inverse kinematicoptimization for 7-DoF serial manipulators with joint lim-its, J. Tsinghua Univ. (Sci. & Technol.), 60(12), 2020,1007–1015.
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