UAV Fault-Tolerant Control by Combined Sliding-mode Control and Fault-dependent Actuator Allocation
Abstract
accommodation if a partial fault has occurred. Control Allocation is added to redistribute control to available healthy actuators to make the system fault tolerant against more severe faults and even to total loss of a control surface. Simulations have been conducted on a model of a Cessna 182 and have shown good results for both the nominal and faulty scenarios.
References
C. Edwards, T. Lombaerts, and H. Smaili, Fault tolerant flight control: a benchmark challenge. Springer, 2010.
A. Zolghadri, “Advanced model-based fdir techniques for aerospace systems: Today challenges and opportunities,” Progress in Aerospace Sciences, vol. 53, pp. 18–29, 2012.
P. Goupil, “Oscillatory failure case detection in the a380 electrical flight control system by analytical redundancy,” Control Engineering Practice, vol. 18(9), pp. 1110–119, 2012.
E. Alcorta-Garcia, A. Zolghadri, and P. Goupil, “A nonlinear observer based strategy for aircraft oscillatory failure detection: A380 case study,” IEEE Transactions on Aerospace And Electronic Systems, vol. 47 (4), pp. 2792–2806, 2011.
S. Hansen and M. Blanke, “Control surface fault diagnosis with specified detection probability - real event experiences,” in The 2013 Int. Conf. on Unmanned Aircraft Systems, ICUAS’2013, 2013.
D. Efimov, J. Cieslak, A. Zolghadri, and D. Henry, “Actuator fault detection in aircraft systems: Oscillatory failure case study,” Annual Reviews in Control, vol. 37, pp. 180–190, 2013.
M. Blanke and S. Hansen, “Towards self-tuning residual generators for uav control surface fault diagnosis,” in Proc. 2nd Int. Conf. on Control and Fault-Tolerant Systems, 2013.
S. Hansen and M. Blanke, “Diagnosis of airspeed measurement faults for unmanned aerial vehicle,” IEEE Transac. on Aerospace and Electronic Systems, vol. 50, no. 1, pp. 224–239, 2014.
Y. Shtessel, Sliding mode control and observation. Birkhauser, 2013.
C. Edwards and S. K. Spurgeon, Sliding Mode Control : Theory and
Applications. Taylor and Francis Ltd, 1998.
N. Hovakimyan and C. Cao, L1 adaptive control theory : Guaranteed
robustness with fast adaptation. SIAM, 2010.
T. Espinoza, A. Dzul, R. Lozano, and P. Parada, “Backstepping - sliding
mode controllers applied to a fixed-wing uav,” 2013 International Conference on Unmanned Aircraft System (ICUAS), pp. 95–104, 2013.
V. V. Patel, K. A. Wise, N. Hovakimyan, C. Cao, and E. Lavretsky, “L1 adaptive controller for tailless unstable aircraft in the presence of unknown actuator failures,” AIAA Guidance, Navigation, and Control Conf. 2007, vol. 1, pp. 24–42, 2007.
Boskovic and Mehra, “Control allocation in overactuated aircraft under
position and rate limiting,” in American Control Conf., 2002.
C. Edwards, H. Alwi, and M. T. Hamayun, “Integral sliding mode fault
tolerant control incorporating on-line control allocation,” Proceedings of the 2010 11th International Workshop on Variable Structure Systems, VSS 2010, pp. 100–105, 2010.
M. T. Hamayun, H. Alwi, and C. Edwards, “An output integral sliding mode ftc scheme using control allocation,” in 50th IEEE Conf. on Decision and Control and European Control Conf. (CDC-ECC), 2011, pp. 2275–2280, 2011.
G. J. J. Ducard, Fault-tolerant flight control and guidance systems
: practical methods for small unmanned aerial vehicles. Springer-
Verlag, 2009.
B. L. Stevens and F. L. Lewis, Aircraft control and simulation. John
Wiley and Sons, 2003.
J. Roskam, Airplane flight dynamics and automatic flight controls.
DARcorporation, 2003.
H. K. Khalil, Nonlinear systems. Prentice Hall, 2002.
DOI: http://dx.doi.org/10.21535%2FProICIUS.2014.v10.244
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