Books and Chapters: [1]        Zhan  Qiang. Robotics: Mechanism, Kinematics, Dynamics and Motion Planning.  Tsinghua University Press, 2019. [2]       Chapter 18 Motion  Planning of a Spherical Mobile Robot, in “Motion  and Operation Planning  of Robotic Systems” (ISBN:  978-3-319-14704-8),Springer,2015. [3]        Chapter 10 Hardware control system of  robotic hands, in “Grasping  in Robotics” (ISSN: 2211-0984),Springer,2013  (one of the top 25% most downloaded eBooks in the relevant Springer  eBook Collection in 2013) [4]       Principle  and Application of Redundant Robot (ISBN:7-111-20151-5),China  Machine Press, 2006, Chapters 2 and 6. Representative  Papers: [1]        Li Wei, Zhan Qiang.  Kinematics-based four-state trajectory tracking control of a spherical mobile  robot driven by a 2-DOF pendulum[J], Chinese Journal of Aeronautics, 2019,  32: 10.1016/j.cja.2018.09.002  [2]        Qiang Zhan, Yihui  Liang, Jialuo Ding, Stewart Williams. A Wire Deflection Detection Method  Based on Image Processing in Wire + Arc Additive Manufacturing. The  International Journal of Advanced Manufacturing Technology. March 2017, Volume  89, Issue 1, pp755-763 [3]        Qiang Zhan, Chao  Zhang, and Xiancan Liu. Evaluation and Optimal Selection of Bionic Hand  Configurations. J. Comput. Theor. Nanosci. 13, 8320–8325 (2016) [4]        Qiang Zhan, Xiancan  Liu. Hand grasp function analysis based on VF set. International Journal of  Humanoid Robotics, Vol.10, No.3, 2013, DOI: 10.1142/S0219843613500266. (SCI:000305907200025).  [5]        Xiancan Liu, Qiang  Zhan. Description of the human hand grasp using graph theory. Medical  Engineering & Physics. 35 (2013), pp. 1020-1027. (SCI :000320414400018) [6]        Zhan Qiang, Wang  Xiang. Hand-eye calibration and positioning for a robot drilling system.  International Journal of Advanced Manufacturing Technology. Volume 61, Issue  5 (2012), Page 691-701. (SCI: 000305907200025).  [7]        Cai Yao, Zhan Qiang,  Xi Xi. Path Tracking Control of a Spherical Mobile Robot. Mechanism and  Machine Theory, 2012, Vol.51: 58-73 (SCI: 000300618000005)  [8]        Yao Cai, Qiang Zhan,  Caixia Yan. Two-State Trajectory Tracking Control of a Spherical Robot Using  Neurodynamics. Robotica, 2012, Vol.30: 195-203(SCI:000300866600004)  [9]        Yao Cai, Qiang Zhan  and Xi Xi. Neural Network Control for the Linear Motion of a Spherical Mobile  Robot. International Journal of Advanced Robotic Systems, 2011, Vol. 8, No.4,  79-87. (SCI:000296190100009)  [10]     Caixia YAN, Qiang  ZHAN. Real-time Multiple Mobile Robots Visual Detection System. Sensor  Review, 2011, Vol. 31, Issue 3: 228 - 238 (SCI: 000293489400005).  [11]     Zheng Minghui, Zhan  Qiang, Liu Jinkun, Cai Yao. Control of a Spherical Robot: Path Following  Based on Nonholonomic Kinematics and Dynamics. Chinese Journal of  Aeronautics, 2011, Vol.24, No.3: 337-345 (SCI:000294989400013).  [12]     Yao Shuangji,  Ceccarelli Marco, Zhan Qiang, Carbone Giuseppe and Lu Zhen. Design  considerations for an underactuated robotic finger mechanism. Chinese Journal  of Mechanical Engineering, Vol.22, No.4, Aug. 2009: 475-488. (SCI:  000269355800001)  [13]     Zhan Qiang, Liu Zengbo,  Cai Yao. A Back-stepping Based Trajectory Tracking Controller for a  Non-Chained Nonholonomic Spherical Robot. Chinese Journal of Aeronautics,  Vol.21, No.5, Oct., 2008: 472-480. (SCI: 000260702000012)   Representative  Invention Patents:  [1]       Multi-fingered dexterous hand  with multi-joint linkage, No. 200910092411.7. [2]       One kind of wide-range  grippers with high load capacity,No.200910092410.2. [3]       A hand-eye vision calibration method for  robot drilling system, No.200910091277.9. [4]       An omnidirectional moving spherical robot, No.200510011953.9. [5]        A spherical robot for  detection,No.200410009121.9.  |