TY - GEN
T1 - Gust load alleviation of aircraft with multiple control effectors in the cruise phase based on L1 adaptive nonlinear dynamic inversion and control allocation
AU - Liu, Jinglong
AU - Zhang, Weiguo
AU - Liu, Xiaoxiong
AU - Qin, Yunxiao
N1 - Publisher Copyright:
© 2018 IEEE.
PY - 2018/8
Y1 - 2018/8
N2 - An aircraft is often inevitably affected by the wind in the cruise phase, as a result an additional overload will be generated at the aircraft fuselage and make passenger uncomfortable and airplane vibrating. Because most of the civil aircrafts also have high aspect-ratio, the elasticity of plane is also large. For some high quality flight phases, the gust load alleviation would also make the tracking accuracy of airplane be better. Due to the drawback of nonlinear dynamic inversion (NDI), which cannot cancel the system uncertainties efficiently, a nonlinear L1 adaptive dynamic inversion control method is proposed in this paper. The L1 controller is made of a static feedback controller and an adaptive controller. The static state feedback provides the inner-loop stability and desired closed-loop characteristics, and the adaptive controller is used to compensate the uncertainties of system. The discrete gust and Dryden turbulence wind are simultaneously employed into the wind model. The simulation results revealed that the GLA controller we built is effective and robust.
AB - An aircraft is often inevitably affected by the wind in the cruise phase, as a result an additional overload will be generated at the aircraft fuselage and make passenger uncomfortable and airplane vibrating. Because most of the civil aircrafts also have high aspect-ratio, the elasticity of plane is also large. For some high quality flight phases, the gust load alleviation would also make the tracking accuracy of airplane be better. Due to the drawback of nonlinear dynamic inversion (NDI), which cannot cancel the system uncertainties efficiently, a nonlinear L1 adaptive dynamic inversion control method is proposed in this paper. The L1 controller is made of a static feedback controller and an adaptive controller. The static state feedback provides the inner-loop stability and desired closed-loop characteristics, and the adaptive controller is used to compensate the uncertainties of system. The discrete gust and Dryden turbulence wind are simultaneously employed into the wind model. The simulation results revealed that the GLA controller we built is effective and robust.
UR - http://www.scopus.com/inward/record.url?scp=85082442631&partnerID=8YFLogxK
U2 - 10.1109/GNCC42960.2018.9019008
DO - 10.1109/GNCC42960.2018.9019008
M3 - 会议稿件
AN - SCOPUS:85082442631
T3 - 2018 IEEE CSAA Guidance, Navigation and Control Conference, CGNCC 2018
BT - 2018 IEEE CSAA Guidance, Navigation and Control Conference, CGNCC 2018
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2018 IEEE CSAA Guidance, Navigation and Control Conference, CGNCC 2018
Y2 - 10 August 2018 through 12 August 2018
ER -