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Reconfigurable control of flexible joint robot with actuator fault and uncertainty


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[1] L. M. Sweet and M. C. Good, “Redefinition of the Robot Motion-Control Problem”, IEEE Control Systems Magazine vol. 5, no. 3, pp. 18-24, 1985.10.1109/MCS.1985.1104955Search in Google Scholar

[2] M. Spong, “Modeling Control of Elastic Joint Robots”, Journal of Dynamic Systems Measurement Control vol. 109, no. 4, pp. 310-319, 1987.10.1115/1.3143860Search in Google Scholar

[3] M. Sayahkarajy, M. Zamri, and A. A. Mohd Faudzi, “Review of Modelling Control of Flexible-Link Manipulators”, Journal of Systems Control Engineering vol 230, no, 8,, pp. 861–873, 2016.10.1177/0959651816642099Search in Google Scholar

[4] I. Giorgio, A. Della Corte, and D. Del Vescovo, “Modelling Flexible Multi-Link Robots for Vibration Control: Numerical Simulations Real-Time Experiments”, Journal of Mathematics Mechanics of Solids, 2017,.10.1177/1081286517729868Search in Google Scholar

[5] A. Tellili, A. Elghoul, and M. N. Abdelkrim, “Additive Fault Tolerant Control of Nonlinear Singularly Perturbed Systems Against Actuator Fault”, Journal Electrical Engineering vol. 68, no. 1, pp. 68-73, 2017.10.1515/jee-2017-0009Search in Google Scholar

[6] Y. C. Liu, M. H. Jin, and H. Liu, “Singular Perturbation Control for Flexible Joint Manipulator based on Flexibility Compensation”, Jiqiren Robot vol. 30, no. 5, pp. 460-466, 2008.Search in Google Scholar

[7] A. Massoum, A. Meroufel, P. Wira, and M. A. Fellah, “Fuzzy Control of the Permanent Magnet Synchronous Machine Singularly Perturbed Fed by a Three Level Inverter”, Journal Electrical Engineering, vol. 63 no. 3, pp. 186-190, 2012.10.2478/v10187-012-0027-5Search in Google Scholar

[8] C. T. Kiang, A. Spowage, and C. K. Yoong, “Review of Control Sensor System of Flexible Manipulator”, Journal of Intelligent & Robotic Systems vol. 77, no. 1, pp. 187-213, 2015.10.1007/s10846-014-0071-4Search in Google Scholar

[9] K. Wang, “Modélisation d’un Robot Manipulateur en vue de la Commande Robuste en Force utilisé en Soudage FSW”, Doctoral thesis, Ecole nationale supérieure d’arts et métiers, 2016.Search in Google Scholar

[10] J. C. Cambera and V. Feliu-Batlle, “Input-State Feedback Linearization Control of a Single-Link Flexible Robot Arm Moving under Gravity and Joint Friction”, Journal of Robotics Autonomous Systems, vol. 88, pp. 24–36, 2017.10.1016/j.robot.2016.11.019Search in Google Scholar

[11] M. K. Spong, and P. Khorasani, “An Integral Manifold Approach to the Feedback Control of Flexible Joint Robots”, IEEE Journal of Robotics Automation vol. 3, no. 4, pp. 291-300, 1987.10.1109/JRA.1987.1087102Search in Google Scholar

[12] S. Ge, “Adaptive Controller Design for Flexible Joint Manipulators”, Automatica vol. 32, no. 2, pp. 273-277, 1996.10.1016/0005-1098(96)85559-2Search in Google Scholar

[13] D. Bustan, S. K. H. Sani, and N. Pariz, “Adaptive Fault-tolerant Spacecraft Attitude Control Design with Transient Response Control”, IEEE/ASME Transactions on Mechatronics, vol. 19, no. 4, pp. 1404–1411, 2014.10.1109/TMECH.2013.2288314Search in Google Scholar

[14] Y. Wang, P. Zhou, Q. Wang, and D. Duan, “Reliable Robust Sampled-Data H-infinity Output Tracking Control with Application to Flight Control”, Information Technology Control vol. 43, no. 2, pp. 175-182, 2014.10.5755/j01.itc.43.2.4821Search in Google Scholar

[15] C. T. Kiang, A. Spowage, and C. K. Yoong, “Review of Control Sensor System of Flexible Manipulator”, Journal of Intelligent & Robotic Systems vol. 77, no. 1, pp. 187–213, 2015.10.1007/s10846-014-0071-4Search in Google Scholar

[16] M. Boukhnifer, “Active Fault Tolerant Control for Ultrasonic Piezoelectric Motor”, Journal of Electrical Engineering vol. 63, no. 3, pp. 224-232, 2012.10.2478/v10187-012-0032-8Search in Google Scholar

[17] M. S. Khireddine and A. Boutarfa, “Reconfigurable Control for a Scara Robot using RBF Networks”, Journal of Electrical Engineering vol. 61 no. 2, pp. 100-106, 2010.10.2478/v10187-010-0014-7Search in Google Scholar

[18] F, Guenab, “Contribution aux systèmes tolérants aux défauts: synthèse dune méthode de reconfiguration et/ou de restructuration intégrant la fiabilité des composants”, Doctoral thesis, Université de Henri Poincaré, 2007.Search in Google Scholar

[19] B. Jiang, M. Staroswiecki, and V. Cocquempot, “Fault Accommodation for Nonlinear Dynamic Systems”, IEEE Transactions on Automatic Control vol. 51, no. 9, pp. 1578-1583, 2006.10.1109/TAC.2006.878732Search in Google Scholar

[20] M. Boukhnifer, “Active Fault Tolerant Control for Ultrasonic Piezoelectric Motor”, Journal of Electrical Engineering vol. 63, no. 3, pp. 224-232, 2012.10.2478/v10187-012-0032-8Search in Google Scholar

[21] S. Kotosaka, H. Asama, H. Kaetsu, I. Endo, K. Sato, and R. Nakayama, “Fault Tolerance of a Functionally Adaptive Robust Manipulator”, IEEE Int. Conf, on Intelligent Robots Systems, pp. 294-300, 1993.Search in Google Scholar

[22] M. Goel et al, “Failure Tolerant Teleportation of a Kinematically Redundant Manipulator: an Experimental Study”, IEEE Transactions on Systems vol. 30, no. 6, pp. 758-765, 2003.10.1109/TSMCA.2003.818462Search in Google Scholar

[23] C. L. Lewis and A. A. Maciejewski, “Fault Tolerant Operation of Kinematically Dedundant Manipulators for Locked Joint Failures”, IEEE Trans. Robotics Automat vol. 13, no. 4, pp. 622-629, 1997.10.1109/70.611335Search in Google Scholar

[24] Y. Ting, S. Tosunoglu, and B. Fernandez, “Control Algorithms for Fault Tolerant Robots”, IEEE Int. Conf, on Robotics Automation San Diego, CA, USA, 1994.Search in Google Scholar

[25] Y. Izumikawa, K. Yubai, and T. Hori, “Vibration Suppression Control of Flexible Arm Robot by PD Gain Switching Considering Sensor Failure”, IEEE Int. Conf, on Industrial Technology Bangkok, pp. 684-689, 2002.Search in Google Scholar

[26] H. J. Yang and M. Tan, “Sliding Mode Control for Flexible-Link Manipulators Based on Adaptive Neural Networks”, International Journal of Automation Computing vol. 15, no. 2, pp. 239-248, 2018.10.1007/s11633-018-1122-2Search in Google Scholar

[27] B. Xu, “ Composite Learning Control of Flexible-Link Manipulator Using NN and DOB”, IEEE Transactions on Systems Man and Cybernetics: Systems vol. 48, no. 11, pp. 1979–1985, 2017.10.1109/TSMC.2017.2700433Search in Google Scholar

[28] H. Liu and Y. Huang, “Robust Adaptive Output Feedback Tracking Control for Flexible-Joint Robot Manipulators based on Singularly Perturbed Decoupling”, Robotica vol. 36, no. 6, pp. 822-838, 2018.10.1017/S0263574718000061Search in Google Scholar

[29] M. Asadi and H. T. Shandiz, “Time Scale Separation in Control of a Single-Link Flexible-Joint Robot Manipulator”, IMA Journal of Mathematical Control Information vol. 35, no. 2, pp. 357-373, 2016.10.1093/imamci/dnw052Search in Google Scholar

[30] Z. Liu, J. Liu, and W. Hu, “ Adaptive Boundary Control of a Flexible Manipulator with Input Saturation”, International Journal of Control vol. 89, no. 6, pp. 1191-1202, 2015.10.1080/00207179.2015.1125022Search in Google Scholar

[31] H. K, Khalil, “Nonlinear Systems”, Prentice Hall, United States of America, 2002.Search in Google Scholar

[32] P. Y. kokotovic, H. K. khalil and J. Oreilly, “Singular Perturbation Methods in Control-Analysis and Design”, Harcourt Brace Jovanovich publishers, Academic press, United States of America, 1999.10.1137/1.9781611971118Search in Google Scholar

[33] A. Saberi and H. K. Khalil, “Stabilization Regulation of Nonlinear Singularly Perturbed Systems-Composite Control”, IEEE Transactions on Automatic Control vol. 30, no. 8, pp. 739-747, 1985.10.1109/TAC.1985.1104064Search in Google Scholar

[34] A. Narang-Siddarth and J. Valasek, “Nonlinear Time Scale Systems in Standard and Nonstandard Forms – Analysis and Control”, Siam, United States of America, 2014.10.1137/1.9781611973341Search in Google Scholar

[35] M. W. Spong, “Adaptive Control of Flexible Joint Manipulators: Comments on Two Papers”, Automatica vol. 31, no. 4, pp. 585-590, 1995.10.1016/0005-1098(95)98487-QSearch in Google Scholar

[36] M. W. Spong, “Adaptive Control of Flexible Joint Manipulators”, Journal of Systems & Control Letters vol. 13, no. 1, pp. 15-21, 1989.10.1016/0167-6911(89)90016-9Search in Google Scholar

[37] Y. Ouyang, W. He, and X. Li, “Reinforcement Learning Control of a Single Link Flexible Robotic Manipulator”, IET Control Theory & Applications vol. 11, no. 9, pp. 1426–1433, 2017.10.1049/iet-cta.2016.1540Search in Google Scholar

[38] Y. N. Cho, J. T. Hong, and H. J. Kim, “Neural Network Based Adaptive Actuator Fault Detection Algorithm for Robot Manipulators”, Journal of Intelligent & Robotic Systems, pp. 1–11, 2018.10.1007/s10846-018-0781-0Search in Google Scholar

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