Cite

Akhtar, A., Nielsen, C. and Waslander, S. (2015). Path following using dynamic transverse feedback linearization for car like robots, IEEE Transactions on Robotics 31(2): 269-279.10.1109/TRO.2015.2395711Search in Google Scholar

Aref, M., Oftadeh, R., Ghabcheloo, R. and Mattila, J. (2015). Fault tolerant control architecture design for mobile manipulation in scientific facilities, International Journal of Advanced Robotic Systems 12(4): 1-12.10.5772/60038Search in Google Scholar

Bilski, A. and Wojciechowski, J. (2016). Automatic parametric fault detection in complex analog systems based on a method of minimum node selection, International Journal of Applied Mathematics and Computer Science 26(3): 655-668, DOI: 10.1515/amcs-2016-0045.10.1515/amcs-2016-0045Open DOISearch in Google Scholar

Blanke, M., Kinnaert, M., Lunze, J. and Staroswiecki, M. (2006). Diagnosis and Fault-Tolerant Control, Springer-Verlag, Berlin/Heidelberg.Search in Google Scholar

Campion, G., Bastin, G. and D’Andrea-Novel, B. (1996). Structural properties and classification of kinematic and dynamic models of wheeled mobile robots, IEEE Transactions on Robotics and Automation 12(1): 47-62.10.1109/70.481750Open DOISearch in Google Scholar

Canudas deWit, C., NDoudi-Likoho, A. andMicaelli, A. (1997). Nonlinear control for a train-like vehicle, International Journal of Robotics and Research 16(3): 300-319.10.1177/027836499701600303Search in Google Scholar

Canudas de Wit, C., Siciliano, B. and Bastin, G. (2012). Theory of Robot Control, Springer-Verlag, London.Search in Google Scholar

Caracciolo, L., Luca, A. and Iannitti, S. (1999). Trajectory tracking control of a four wheel differentially driven mobile robot, Proceedings of the 1999 IEEE International Conference on Robotics and Automation, Detroit, MI, USA, pp. 2632-2638.Search in Google Scholar

Dixon, W., Dawson, D., Zergeroglu, E. and Behal, A. (2001). Adaptive tracking control of a wheeled mobile robot via an uncalibrated camera system, IEEE Transactions on Systems, Man, and Cybernetics B: Cybernetics 31(3): 341-352.10.1109/3477.93151918244797Open DOISearch in Google Scholar

Do, K., Jiang, Z. and Pan, J. (2004). A global output-feedback controller for simultaneous tracking and stabilization of unicycle-type mobile robots, IEEE Transactions on Robotics and Automation 20(3): 589-594.10.1109/TRA.2004.825470Open DOISearch in Google Scholar

Efimov, D., Cieslak, J. and Henry, D. (2013). Supervisory fault-tolerant control with mutual performance optimization, International Journal of Adaptive Control and Signal Processing 17(4): 251-279.10.1002/acs.2296Open DOISearch in Google Scholar

Fierro, R. and Lewis, F. (1995). Control of a nonholonomic mobile robot: Backstepping kinematics into dynamics, Proceedings of the 34th Conference on Decision and Control, New Orleans, LO, USA, pp. 3805-3810.Search in Google Scholar

Fourlas, G., Karras, G. and Kyriakopoulos, K. (2015). Fault tolerant control for a 4-wheel skid steering mobile robot, 26th International Workshop on Principles of Diagnosis, Paris, France, pp. 177-183.Search in Google Scholar

Franzè, G., Tedesco, F. and Famularo, D. (2015). Actuator fault tolerant control: A receding horizon set-theoretic approach, IEEE Transactions on Automatic Control 80(8): 2225-2230.10.1109/TAC.2014.2375731Search in Google Scholar

Fukao, T., Nakagawa, H. and Adachi, N. (2000). Adaptive tracking control of a nonholonomic mobile robot, IEEE Transactions on Robotics and Automation 16(6): 609-615. 10.1109/70.880812Open DOISearch in Google Scholar

Ge, S., Wang, Z. and Lee, T. (2003). Adaptive stabilization of uncertain nonholonomic system by state and output feedback, Automatica 39(8): 1451-1460.10.1016/S0005-1098(03)00119-5Search in Google Scholar

Goel, P., Dedeoglu, G., Roumeliotis, S. and Sukhatme, G. (2000). Fault detection and identification in a mobile robot using multiple estimation and neural network, Proceedings of the 2000 IEEE International Conference on Robotics and Automation, San Francisco, CA, USA, pp. 2302-2309.Search in Google Scholar

González-Sierra, J., Aranda-Bricaire, E., Hernández-Mendoza, D. and Santiaguillo-Salinas, J. (2014). Emulation of n-trailer systems through differentially driven multi-agent systems: Continuous- and discrete-time approaches, Journal of Intelligent and Robotic Systems 75(1): 159-146.10.1007/s10846-013-0002-9Search in Google Scholar

Hamayun, M.T., Edwards, C., Alwi, H. and Bajodah, A. (2015). A fault tolerant direct control allocation scheme with integral sliding modes, International Journal of Applied Mathematics and Computer Science 25(1): 93-102, DOI: 10.1515/amcs-2015-0007.10.1515/amcs-2015-0007Open DOISearch in Google Scholar

Hassanabadi, A.H., Shafiee, M. and Puig, V. (2016). Robust fault detection of singular LPV systems with multiple time-varying delays, International Journal of Applied Mathematics and Computer Science 26(1): 45-61, DOI: 10.1515/amcs-2016-0004.10.1515/amcs-2016-0004Open DOISearch in Google Scholar

Huang, J., Wen, C., Wang, W. and Jiang, Z. (2014). Adaptive output feedback tracking control of a nonholonomic mobile robot, Automatica 50(3): 821-831.10.1016/j.automatica.2013.12.036Open DOISearch in Google Scholar

Ji, M. and Sarkar, N. (2007). Supervisory fault adaptive control of a mobile robot and its application in sensor-fault accommodation, IEEE Transactions on Robotics 23(1): 174-178.10.1109/TRO.2006.889481Open DOISearch in Google Scholar

Ji,M., Zhang, Z., Biswas, G. and Sarkar, N. (2003). Hybrid fault adaptive control of a wheeled mobile robot, IEEE/ASME Transactions on Mechatronics 8(2): 226-233.10.1109/TMECH.2003.812823Open DOISearch in Google Scholar

Khalaji, A. and Moosavian, S. (2014). Robust adaptive controller for a tractor-trailer mobile robot, IEEE/ASME Transactions on Mechatronics 19(3): 943-953.10.1109/TMECH.2013.2261534Open DOISearch in Google Scholar

Kim, T., Park, J. and Kim, H. (2015). Actuator reconfiguration control of a robotic vehicle with four independent wheel driving, 15th International Conference on Control, Automation and Systems, Busan, Korea, pp. 1767-1770.Search in Google Scholar

Koh, M., Noton, M. and Khoo, S. (2012). Robust fault-tolerant leader-follower control of four-wheel-steering mobile robots using terminal sliding mode, Australian Journal of Electrical and Electronics Engineering 9(4): 247-254.10.1080/1448837X.2012.11464329Search in Google Scholar

Kozłowski, K. and Pazderski, D. (2004). Modeling and control of a 4-wheel skid-steering mobile robot, International Journal of Applied Mathematics and Computer Science 14(4): 477-496.Search in Google Scholar

Li, X. and Yang, G. (2012). Robust adaptive fault-tolerant control for uncertain linear systems with actuator failures, IET Control Theory and Applications 6(10): 1544-1551.10.1049/iet-cta.2011.0599Open DOISearch in Google Scholar

Michałek, M. (2014). A highly scalable path-following controller for N-trailers with off-axle hitching, Control Engineering Practice 29: 61-73.10.1016/j.conengprac.2014.04.001Search in Google Scholar

Michałek, M. (2017). Cascade-like modular tracking controller for non-standard N-trailer, IEEE Transactions on Control System Technology 25(2): 619-627.10.1109/TCST.2016.2557232Search in Google Scholar

Morin, P. and Samson, C. (2012). Feedback control of the general two-trailers system with the transverse function approach, IEEE 51st Annual Conference on Decision and Control, Maui, HI, USA, pp. 1003-1010.Search in Google Scholar

Narendra, K. and Balakrishnan, J. (1997). Adaptive control using multiple-models, IEEE Transactions on Automatic Control 42(2): 171-187.10.1109/9.554398Open DOISearch in Google Scholar

Patton, R., Chen, L. and Klinkhieo, S. (2012). An LPV pole-placement approach to friction compensation as an FTC problem, International Journal of Applied Mathematics and Computer Science 22(1): 149-160, DOI: 10.2478/v10006-012-0011-z.10.2478/v10006-012-0011-zOpen DOISearch in Google Scholar

Ritzen, P., Roebroek, E., Van de Wouw, N., Jiang, Z. and Nijmeijer, H. (2016). Trailer steering control of a tractor-trailer robot, IEEE Transactions on Control System Technology 24(4): 1240-1252.10.1109/TCST.2015.2499699Search in Google Scholar

Rotondo, D., Nejjari, F. and Puig, V. (2015). Robust quasi-LPV model reference FTC of a quadrotor UAV subject to actuator faults, International Journal of Applied Mathematics and Computer 25(1): 7-22, DOI: 10.1515/amcs-2015-0001.10.1515/amcs-2015-0001Open DOISearch in Google Scholar

Rotondo, D., Puig, V., Nejjari, F. and Romera, J. (2014). A fault-hiding approach for the switching quasi-LPV fault-tolerant control of a four-wheeled omnidirectional mobile robot, IEEE Transactions on Industrial Electronics 62(6): 3932-3944.10.1109/TIE.2014.2367002Search in Google Scholar

Skoundrianos, E. and Tzafestas, S. (2004). Finding fault: Fault diagnosis on the wheels of a mobile robot using local model neural networks, IEEE Robotics and Automation Magazine 11(3): 83-90.10.1109/MRA.2004.1337829Search in Google Scholar

Sørdalen, O. andWichlund, K. (1993). Exponential stabilization of a car with n trailers, 32nd Conference on Decison Control, San Antonio, TX, USA, pp. 978-983. Search in Google Scholar

Tan, C., Yang, H. and Tao, G. (2016). A multiple-model MRAC scheme for multivariable systems with matching uncertainties, Information Sciences 360(10): 217-230.10.1016/j.ins.2016.04.034Search in Google Scholar

Tao, G. (2003). Adaptive Control Design and Analysis, John Wiley & Sons, Hoboken, NJ. Tilbury, D., Sørdalen, O., Bushnell, L. and Sastry, S. (1995). A multisteering trailer system: Conversion into chained form using feedback, IEEE Transactions on Robotics and Automation 11(6): 807-818.10.1002/0471459100Search in Google Scholar

Yang, H., Fan, X., Shi, P. and Hua, C. (2016). Nonlinear control for tracking and obstacle avoidance of a wheeled mobile robot with nonholonomic constraint, IEEE Transactions on Control Systems Technology 24(2): 741-746.Search in Google Scholar

Yang, X. andMaciejowski, J. (2015). Fault tolerant control using Gaussian processes and model predictive control, International Journal of Applied Mathematics and Computer Science 25(1): 133-148, DOI: 10.1515/amcs-2015-0010.10.1515/amcs-2015-0010Open DOISearch in Google Scholar

Ye, D. and Yang, G. (2006). Adaptive fault-tolerant tracking control against actuator faults with application to flight control, IEEE Transactions on Control Systems Technology 14(6): 1088-1096.10.1109/TCST.2006.883191Open DOISearch in Google Scholar

Yu, X. and Jiang, J. (2015). A survey of fault-tolerant controllers based on safety-related issues, Annual Reviews in Control 39: 46-57.10.1016/j.arcontrol.2015.03.004Search in Google Scholar

Yuan, J., Sun, F. and Huang, Y. (2015). Trajectory generation and tracking control for double-steering tractor-trailer mobile robots with on-axle hitching, IEEE/ASME Transactions on Mechatronics 62(12): 7665-7677.10.1109/TIE.2015.2455016Search in Google Scholar

Zhang, X. and Cocquempot, V. (2014). Fault tolerant control for an electric 4WD vehicle’s path tracking with active fault diagnosis, 19th IFAC World Congress, Cape Town, South Africa, pp. 6728-6734.Search in Google Scholar

Zhang, Y. and Jiang, J. (2008). Bibliographical review on reconfigurable fault-tolerant control systems, Annual Reviews in Control 32(2): 229-252.10.1016/j.arcontrol.2008.03.008Open DOISearch in Google Scholar

Zou, A. and Kumar, K. (2012). Robust attitude coordination control for spacecraft formation flying under actuator failures, AIAA Journal of Guidance, Control and Dynamics 35(4): 1247-1255.10.2514/1.55218Open DOISearch in Google Scholar

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