MODEL SIMULATION AND POSITION CONTROL EXPERIMENTS OF PNEUMATIC MUSCLE WITH SHAPE MEMORY ALLOY BRAIDED SLEEVE

Binrui Wang, Yinglian Jin, Miao Cheng, and Weiyi Zhou

References

  1. [1] S. Krishna, T. Nagarajan, and A.M.A. Rani, Review of current development of pneumatic artificial muscle, Journal of Applied Sciences, 11, 2011, 1749–1755.
  2. [2] D.W. Repperger, C.A. Phillips, A. Neidhard-Doll, D.B. Reynolds, and J. Berlin, Actuator design using biomimicry methods and a pneumatic muscle system, Control Engineering Practice, 14, 2006, 999–1009.
  3. [3] T.Y. Choi, J.Y. Lee, and J.J. Lee, Control of artificial pneumatic muscle for robot application, Proc. 2006 Int. Conf. on Intelligent Robots and Systems, Beijing, China, 2006, 4896–4901.
  4. [4] T.Y. Choi, B.S. Choi, and K.H. Seo, Position and compliance control of a pneumatic muscle actuated manipulator for enhance safety, IEEE Transactions on Control Systems Technology, 4, 2011, 832–842.
  5. [5] S. Balasubramanian, H. Huang, and J. He, Quantification of dynamic property of pneumatic muscle actuator for design of therapeutic robot control, Proc. 28th Annual Int. Conf. on Engineering in Medicine and Biology Society, New York, NY, 2006, 2734–2737.
  6. [6] S. Balasubramanian, J. Ward, T. Sugar, and J. He, Characterization of the dynamic properties of pneumatic muscle actuators, Proc. 10th Int. Conf. on Rehabilitation Robotics, Noordwijk, The Netherlands, 2007, 764–770.
  7. [7] K.E. Gordon and G.S. Sawicki, Mechanical performance of artificial pneumatic muscles to power an ankle-foot orthosis, Biomechanics, 39, 2006, 1832–1841.
  8. [8] T.D.C. Thanh and K.K. Ahn, Nonlinear PID control to improve the control performance of 2 axes pneumatic artificial muscle manipulator using neural network, Mechatronics, 16, 2006, 577–587.
  9. [9] T.D.C. Thanh and K.K. Ahn, Intelligent control of 2 axes pneumatic artificial muscle manipulator, Proc. 2007 Int. Symposium on Electrical and Electronics Engineering, HCM City, Vietnam, 2007, 14–19.
  10. [10] J. Sarosi, J. Gyeviki, A. Veha, and P. Toman, Accurate position control of PAM actuator in lab VIEW environment, Proc. 7th Int. Symposium on Intelligent Systems and Informatics, Subotica, Serbia, 2009, 301–305.
  11. [11] A. Pujana-Arrese, A. Mendizabal, J. Arenas, S. Riano, and J. Landaluze, Research on the position control of a 1-DoFset-up powered by pneumatic muscles, Proc. 2009 IEEE Int. Conf. on Mechatronics, Malaga, Spain, 2009, 1–6.
  12. [12] H. Aschemann and D. Schindele, Sliding-mode control of a high-speed linear axis driven by pneumatic muscle actuators, IEEE Transactions on Industrial Electronics, 11, 2008, 3855–3864.
  13. [13] T. Nakamura and H. Shinohara, Position and force control based on mathematical models of pneumatic artificial muscles reinforced by straight glass fibers, Proc. 2007 IEEE Int. Conf. on Robotics and Automation, Rome, Italy, 2007, 4361 4366.
  14. [14] B.R. Wang, W.Y. Zhou, and H. Xu, Static actuating characteristics of intelligent pneumatic muscle, Nongye Jixie Xuebao, 3, 2009, 208–212 (in Chinese).
  15. [15] C.J. Qin, M. Pei-sun, and Y. Qin, A prototype micro-wheeled-robot using SMA actuator, Sensors and Actuators A, 113, 2004, 94–99.
  16. [16] T. Miyajima, T. Fujita, and K. Sakaki, Development of a digital control system for high-performance pneumatic servo valve, Precision Engineering, 31, 2007, 156–161.

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