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Stability and Transparency of Delayed Bilateral Teleoperation with Haptic Feedback

International Journal of Applied Mathematics and Computer Science's Cover Image
International Journal of Applied Mathematics and Computer Science
New Perspectives in Nonlinear and Intelligent Control (In Honor of Alexander P. Kurdyukov) (special section, pp. 629-712), Julio B. Clempner, Enso Ikonen, Alexander P. Kurdyukov (Eds.)

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Anderson, R.J. and Spong, M.W. (1989). Bilateral control of teleoperators with time delay, IEEE Transactions on Automatic Control34(5): 494–501.10.1109/9.24201Search in Google Scholar

Balachandran, R., Artigas, J., Mehmood, U. and Ryu, J. (2016). Performance comparison of wave variable transformation and time domain passivity approaches for time-delayed teleoperation: Preliminary results, 2016 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS), Daejeon, Korea, pp. 410–417.10.1109/IROS.2016.7759087Search in Google Scholar

Chen, Z., Huang, F., Song, W. and Zhu, S. (2018). A novel wave-variable based time-delay compensated four-channel control design for multilateral teleoperation system, IEEE Access6(5): 25506–25516.10.1109/ACCESS.2018.2829601Search in Google Scholar

Chiaverini, S., Siciliano, B. and Villani, L. (1994). Force/position regulation of compliant robot manipulators, IEEE Transactions on Automatic Control39(3): 647–652.10.1109/9.280780Search in Google Scholar

Cho, H.C. and Park, J.H. (2005). Stable bilateral teleoperation under a time delay using a robust impedance control, Mechatronics15(5): 611 – 625.10.1016/j.mechatronics.2004.05.006Search in Google Scholar

Chopra, N., Spong, M.W., Hirche, S. and Buss, M. (2003). Bilateral teleoperation over the internet: The time varying delay problem, American Control Conference, Denver, CO, USA, pp. 155–160.Search in Google Scholar

Chopra, N., Spong, M. W. and Lozano, R. (2008). Synchronization of bilateral teleoperators with time delay, Automatica44(8): 2142–2148.10.1016/j.automatica.2007.12.002Search in Google Scholar

Chopra, N., Spong, M.W., Ortega, R. and Barabanov, N.E. (2006). On tracking performance in bilateral teleoperation, IEEE Transactions on Robotics22(4): 861–866.10.1109/TRO.2006.878942Search in Google Scholar

Ehrampoosh, S., Dave, M., Kia, M.A., Rablau, C. and Zadeh, M.H. (2013). Providing haptic feedback in robot-assisted minimally invasive surgery: A direct optical force-sensing solution for haptic rendering of deformable bodies, Computer Aided Surgery18(5–6): 129–141, DOI: 10.3109/10929088.2013.839744.10.3109/10929088.2013.83974424156342Open DOISearch in Google Scholar

Erden, M.S. and Marić, B. (2011). Assisting manual welding with robot, Robotics and Computer-Integrated Manufacturing27(4): 818–828.10.1016/j.rcim.2011.01.003Search in Google Scholar

Ganjefar, S., Rezaei, S. and Hashemzadeh, F. (2017). Position and force tracking in nonlinear teleoperation systems with sandwich linearity in actuators and time-varying delay, Mechanical Systems and Signal Processing86(1): 308–324.10.1016/j.ymssp.2016.09.023Search in Google Scholar

Hogan, N. (1985). Impedance control: An approach to manipulation. Part II: Implementation, Journal of Dynamic Systems, Measurement, and Control107(1): 8–16, DOI: 10.1115/1.3140713.10.1115/1.3140713Open DOISearch in Google Scholar

Hokayem, P.F. and Spong, M.W. (2006). Bilateral teleoperation: An historical survey, Automatica42(12): 2035–2057.10.1016/j.automatica.2006.06.027Search in Google Scholar

Imaida, T., Yokokohji, Y., Doi, T., Oda, M. and Yoshikawa, T. (2004). Ground-space bilateral teleoperation of ETS-VII robot arm by direct bilateral coupling under 7-s time delay condition, IEEE Transactions on Robotics and Automation20(3): 499–511.10.1109/TRA.2004.825271Search in Google Scholar

Ishii, T. and Katsura, S. (2012). Bilateral control with local force feedback for delay-free teleoperation, 12th IEEE International Workshop on Advanced Motion Control (AMC), Sarajevo, Bosnia and Herzegovina, pp. 1–6.10.1109/AMC.2012.6197100Search in Google Scholar

Jafari, A., Rezaei, S., Ghidary, S.S., Zareinejad, M., Baghestan, K. and Dehghan, M. (2013). A stable perturbation estimator in force-reflecting passivity-based teleoperation, Transactions of the Institute of Measurement and Control35(2): 147–156, DOI: 10.1177/0142331211435849.10.1177/0142331211435849Open DOISearch in Google Scholar

Jordan, M.A. and Bustamante, J.L. (2007). On the presence of nonlinear oscillations in the teleoperation of underwater vehicles under the influence of sea wave and current, American Control Conference, New York City, NY, USA, pp. 894–899.10.1109/ACC.2007.4283036Search in Google Scholar

Kawashima, K., Tadano, K., Sankaranarayanan, G. and Hannaford, B. (2008). Model-based passivity control for bilateral teleoperation of a surgical robot with time delay, IEEE/RSJ International Conference on Intelligent Robots and Systems, Nice, France, pp. 1427–1432.10.1109/IROS.2008.4650684Search in Google Scholar

Lawrence, D.A. (1993). Stability and transparency in bilateral teleoperation, IEEE Transactions on Robotics and Automation9(5): 624–637.10.1109/70.258054Search in Google Scholar

Lee, D. and Li, P.Y. (2005). Passive bilateral control and tool dynamics rendering for nonlinear mechanical teleoperators, IEEE Transactions on Robotics21(5): 936–951.10.1109/TRO.2005.852259Search in Google Scholar

Lee, D. and Spong, M.W. (2006). Passive bilateral teleoperation with constant time delay, IEEE Transactions on Robotics22(2): 269–281.10.1109/TRO.2005.862037Search in Google Scholar

Liu, S., Wei, X., Zheng, W. and Yang, B. (2018). A four-channel time domain passivity approach for bilateral teleoperator, IEEE International Conference on Mechatronics and Automation (ICMA), Changchun, China, pp. 318–322.10.1109/ICMA.2018.8484544Search in Google Scholar

Lozano, R., Brogliato, B., Egeland, O. and Maschke, B. (2007). Dissipative Systems Analysis and Control, Springer, London.10.1007/978-1-84628-517-2Search in Google Scholar

Mobasser, F. and Hashtrudi-Zaad, K. (2008). Transparent rate mode bilateral teleoperation control, International Journal of Robotics Research27(1): 57–72, DOI: 10.1177/0278364907083397.10.1177/0278364907083397Open DOISearch in Google Scholar

Munir, S. and Book, W.J. (2002). Internet-based teleoperation using wave variables with prediction, IEEE/ASME Transactions on Mechatronics7(2): 124–133.10.1109/TMECH.2002.1011249Search in Google Scholar

Munir, S. and Book, W.J. (2003). Control techniques and programming issues for time delayed internet based teleoperation, Journal of Dynamic Systems, Measurement, and Control125(2): 205–214, DOI: 10.1115/1.1568120.10.1115/1.1568120Open DOISearch in Google Scholar

Niemeyer, G. and Slotine, J.E. (1998). Towards force-reflecting teleoperation over the internet, IEEE International Conference on Robotics and Automation, Leuven, Belgium, Vol.3, pp. 1909–1915 vol.3.Search in Google Scholar

Niemeyer, G. and Slotine, J.J.E. (1991). Stable adaptive teleoperation, IEEE Journal of Oceanic Engineering16(1): 152–162.10.1109/48.64895Search in Google Scholar

Niemeyer, G. and Slotine, J.-J.E. (2004). Telemanipulation with time delays, International Journal of Robotics Research23(9): 873–890, DOI: 10.1177/0278364904045563.10.1177/0278364904045563Open DOISearch in Google Scholar

Nohmi, M. (2003). Space teleoperation using force reflection of communication time delay, 2003 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS 2003), Las Vegas, NV, USA, Vol. 3, pp. 2809–2814.Search in Google Scholar

Nuno, E. and Basanez, L. (2009). Nonlinear bilateral teleoperation: Stability analysis, IEEE International Conference on Robotics and Automation, Kobe, Japan, pp. 3718–3723.10.1109/ROBOT.2009.5152490Search in Google Scholar

Nuno, E., Ortega, R., Barabanov, N. and Basaez, L. (2008). A globally stable pd controller for bilateral teleoperators, IEEE Transactions on Robotics24(3): 753–758.10.1109/TRO.2008.921565Search in Google Scholar

Nuno, E., Ortega, R. and Basanez, L. (2010). An adaptive controller for nonlinear teleoperators, Automatica46(1): 155–159.10.1016/j.automatica.2009.10.026Search in Google Scholar

Ousaid, A.M., Haliyo, D.S., Rgnier, S. and Hayward, V. (2015). A stable and transparent microscale force feedback teleoperation system, IEEE/ASME Transactions on Mechatronics20(5): 2593–2603.10.1109/TMECH.2015.2423092Search in Google Scholar

Rebelo, J. and Schiele, A. (2015). Time domain passivity controller for 4-channel time-delay bilateral teleoperation, IEEE Transactions on Haptics8(1): 79–89.10.1109/TOH.2014.236346625343769Search in Google Scholar

Salcudean, S.E., Zhu, M., Zhu, W.-H. and Hashtrudi-Zaad, K. (2000). Transparent bilateral teleoperation under position and rate control, International Journal of Robotics Research19(12): 1185–1202, DOI: 10.1177/02783640022068020.10.1177/02783640022068020Open DOISearch in Google Scholar

Tanner, N.A. and Niemeyer, G. (2005). Improving perception in time delayed teleoperation, Proceedings of the 2005 IEEE International Conference on Robotics and Automation, Barcelona, Spain, pp. 354–359.Search in Google Scholar

Wen, J.T. and Murphy, S. (1991). Stability analysis of position and force control for robot arms, IEEE Transactions on Automatic Control36(3): 365–371.10.1109/9.73573Search in Google Scholar

Xu, X., Cizmeci, B., Schuwerk, C. and Steinbach, E. (2016). Model-mediated teleoperation: Toward stable and transparent teleoperation systems, IEEE Access4(1): 425–449.10.1109/ACCESS.2016.2517926Search in Google Scholar

Yokokohji, Y., Imaida, T. and Yoshikawa, T. (1999). Bilateral teleoperation under time-varying communication delay, IEEE/RSJ International Conference on Intelligent Robots and Systems: Human and Environment Friendly Robots with High Intelligence and Emotional Quotients, Kyongju, South Korea, Vol. 3, pp. 1854–1859.Search in Google Scholar

Yokokohji, Y. and Yoshikawa, T. (1994). Bilateral control of master-slave manipulators for ideal kinesthetic coupling-formulation and experiment, IEEE Transactions on Robotics and Automation10(5): 605–620.10.1109/70.32656611539289Search in Google Scholar

Zhu, M. and Salcudean, S.E. (1995). Achieving transparency for teleoperator systems under position and rate control, IEEE/RSJ International Conference on Intelligent Robots and Systems: Human Robot Interaction and Cooperative Robots, Pittsburgh, PA, USA, Vol. 2, pp. 7–12.Search in Google Scholar

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