Design and Manufacturing a Bio-inspired Variable Stiffness Mechanism in a Robotic Dolphin
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[1] Kyu-Jin Cho,et al. Design and analysis of a stiffness adjustable structure using an endoskeleton , 2012 .
[2] Kyu-Jin Cho,et al. Review of biomimetic underwater robots using smart actuators , 2012 .
[3] Y. Imaizumi,et al. Propulsion system with flexible/rigid oscillating fin , 1995 .
[4] Li Wen,et al. Development of a two‐joint robotic fish for real‐world exploration , 2011, J. Field Robotics.
[5] Christopher J. Esposito,et al. A robotic fish caudal fin: effects of stiffness and motor program on locomotor performance , 2012, Journal of Experimental Biology.
[6] George V. Lauder,et al. Robotic Models for Studying Undulatory Locomotion in Fishes , 2011 .
[7] Chapman,et al. Experimental simulation of the thrust phases of fast-start swimming of fish , 1997, The Journal of experimental biology.
[8] Kamal Youcef-Toumi,et al. Performance of Machines with Flexible Bodies Designed for Biomimetic Locomotion in Liquid Environments , 2005, Proceedings of the 2005 IEEE International Conference on Robotics and Automation.
[9] Kamal Youcef-Toumi,et al. Design of Machines With Compliant Bodies for Biomimetic Locomotion in Liquid Environments , 2006 .
[10] Hirohisa Morikawa,et al. Structure and Bending Properties of Central Part of Tail Fin of Dolphin , 2010 .
[11] K H Low,et al. Parametric study of the swimming performance of a fish robot propelled by a flexible caudal fin , 2010, Bioinspiration & biomimetics.
[12] Sadao Kawamura,et al. Haptic displays implemented by controllable passive elements , 2002, Proceedings 2002 IEEE International Conference on Robotics and Automation (Cat. No.02CH37292).
[13] S. Kawamura,et al. Development of passive elements with variable mechanical impedance for wearable robots , 2002, Proceedings 2002 IEEE International Conference on Robotics and Automation (Cat. No.02CH37292).
[14] Kyu-Jin Cho,et al. Kinematic Condition for Maximizing the Thrust of a Robotic Fish Using a Compliant Caudal Fin , 2012, IEEE Transactions on Robotics.
[15] Christopher J. Esposito,et al. Use of biorobotic models of highly deformable fins for studying the mechanics and control of fin forces in fishes. , 2011, Integrative and comparative biology.
[16] Maarja Kruusmaa,et al. A bio-mimetic design and control of a fish-like robot using compliant structures , 2011, 2011 15th International Conference on Advanced Robotics (ICAR).
[17] Masataka Nakabayashi,et al. Bioinspired Propulsion Mechanism Using a Fin with a Dynamic Variable-Effective-Length Spring , 2009 .