Design and Modeling of a New Drive System and Exaggerated Rectilinear-Gait for a Snake-Inspired Robot
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[1] Benedetto Allotta,et al. Traveling wave locomotion hyper-redundant mobile robot , 1998, Proceedings. 1998 IEEE International Conference on Robotics and Automation (Cat. No.98CH36146).
[2] Howie Choset,et al. Simplified motion modeling for snake robots , 2012, 2012 IEEE International Conference on Robotics and Automation.
[3] William Whittaker,et al. Limbless locomotion: learning to crawl with a snake robot , 1997 .
[4] Brent W. Spranklin,et al. A survey of snake-inspired robot designs , 2009, Bioinspiration & biomimetics.
[5] Mark Yim,et al. Telecubes: mechanical design of a module for self-reconfigurable robotics , 2002, Proceedings 2002 IEEE International Conference on Robotics and Automation (Cat. No.02CH37292).
[6] L. W. Tsai,et al. Robot Analysis: The Mechanics of Serial and Parallel Ma-nipulators , 1999 .
[7] Shigeo Hirose,et al. Study on slime robot (proposal of slime robot and design of slim slime robot) , 2000, Proceedings. 2000 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS 2000) (Cat. No.00CH37113).
[8] Byungkyu Kim,et al. Pneumatic robot based on inchworm motion for small diameter pipe inspection , 2007, 2007 IEEE International Conference on Robotics and Biomimetics (ROBIO).
[9] Sabri Tosunoglu,et al. DESIGN OF A CRAWLING GAIT FOR A MODULAR ROBOT , 2004 .
[10] Howie Choset,et al. Design and architecture of the unified modular snake robot , 2012, 2012 IEEE International Conference on Robotics and Automation.
[11] Øyvind Stavdahl,et al. Modular Pneumatic Snake Robot: 3D Modelling, Implementation And Control , 2008 .
[12] Howie Choset,et al. Dynamic Ambiguities in Frictional Rigid-body Systems with Application to Climbing via Bracing , 2005, Proceedings of the 2005 IEEE International Conference on Robotics and Automation.
[13] Roger D. Quinn,et al. A new theory and methods for creating peristaltic motion in a robotic platform , 2010, 2010 IEEE International Conference on Robotics and Automation.
[14] Ismet Erkmen,et al. Intelligent gait synthesizer for serpentine robots , 2002, Proceedings 2002 IEEE International Conference on Robotics and Automation (Cat. No.02CH37292).
[15] Howie Choset,et al. Design of a modular snake robot , 2007, 2007 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[16] Gregory S. Chirikjian,et al. The kinematics of hyper-redundant robot locomotion , 1995, IEEE Trans. Robotics Autom..
[17] Yan Gao,et al. Locomotive gait generation for inchworm-like robots using finite state approach , 2001, Robotica.
[18] Satyandra K. Gupta,et al. Characterization of forward rectilinear-gait performance for a snake-inspired robot , 2012, PerMIS.
[19] Diana M. Rincón,et al. Ver-vite: dynamic and experimental analysis for inchwormlike biomimetic robots , 2003, IEEE Robotics Autom. Mag..
[20] Satyandra K. Gupta,et al. A Case Study in Optimization of Gait and Physical Parameters for a Snake-Inspired Robot Based on a Rectilinear Gait , 2011 .
[21] Pål Liljebäck,et al. A survey on snake robot modeling and locomotion , 2009, Robotica.
[22] Robert J. Wood,et al. Peristaltic locomotion with antagonistic actuators in soft robotics , 2010, 2010 IEEE International Conference on Robotics and Automation.
[23] Mark H. Yim,et al. Locomotion With A Unit-Modular Reconfigurable Robot , 1995 .
[24] I-Ming Chen,et al. Locomotion of a Two-Dimensional Walking-Climbing Robot Using A Closed-Loop Mechanism: From Gait Generation to Navigation , 2003, Int. J. Robotics Res..
[25] Mark H. Yim,et al. Modular Reconfigurable Robots, An Approach To Urban Search and Rescue , 2002 .
[26] Bin Li,et al. Analysis of traveling wave locomotion of snake robot , 2003, IEEE International Conference on Robotics, Intelligent Systems and Signal Processing, 2003. Proceedings. 2003.
[27] Bernhard Klaassen,et al. GMD-Snake: A Semi-Autonomous Snake-like Robot , 1996, DARS.
[28] Taro Nakamura,et al. Development of a peristaltic crawling robot using magnetic fluid on the basis of the locomotion mechanism of the earthworm , 2004 .
[29] H. W. Lissmann. Rectilinear Locomotion in a Snake ( Boa Occidentalis ) , 1950 .
[30] I-Ming Chen,et al. Design and Development of a Planar Inchworm Robot , 2000 .
[31] H. Kurokawa,et al. Automatic locomotion design and experiments for a Modular robotic system , 2005, IEEE/ASME Transactions on Mechatronics.
[32] Alireza Akbarzadeh,et al. Effect of Friction Models on Snake Robot Performance , 2011 .
[33] Satyandra K. Gupta,et al. Dynamics-Based Model for a New Class of a Rectilinear-Gait for a Snake-Inspired Robot , 2012 .
[34] J. Gray. The mechanism of locomotion in snakes. , 1946, The Journal of experimental biology.
[35] Kristin Ytterstad Pettersen,et al. Non-smooth 3D Modeling of a Snake Robot with Frictional Unilateral Constraints , 2006, 2006 IEEE International Conference on Robotics and Biomimetics.