TY - GEN
T1 - LPV Model-Based Parameter Estimation for Damaged Asymmetric Aircraft
AU - Jiangpeng, Xu
AU - Lingyu, Yang
AU - Jing, Zhang
N1 - Publisher Copyright:
© 2020 IEEE.
PY - 2020/11/6
Y1 - 2020/11/6
N2 - Online parameter estimation plays an important role in the design of fault-tolerant flight control systems. In this paper, we present a new parameter estimation technique for the reduced parameter LPV (Linear parameter-varying system) model with aircraft structural damage. Specifically, an LPV model is proposed for the modeling of the damaged aircraft, and prior information is introduced to simplify the model, then an RLS (Recursive Least squares)-based parameter estimation method is designed. By employing the proposed LPV model, it not only reduces the online computational load significantly compared with that of typical existing methods but also improves the estimation performance based on reducing the parameters to be estimated. At last, the closed-loop simulation with the National Aeronautics and Space Administration generic transport model under a left-wing tip damage scenario is given.
AB - Online parameter estimation plays an important role in the design of fault-tolerant flight control systems. In this paper, we present a new parameter estimation technique for the reduced parameter LPV (Linear parameter-varying system) model with aircraft structural damage. Specifically, an LPV model is proposed for the modeling of the damaged aircraft, and prior information is introduced to simplify the model, then an RLS (Recursive Least squares)-based parameter estimation method is designed. By employing the proposed LPV model, it not only reduces the online computational load significantly compared with that of typical existing methods but also improves the estimation performance based on reducing the parameters to be estimated. At last, the closed-loop simulation with the National Aeronautics and Space Administration generic transport model under a left-wing tip damage scenario is given.
KW - LPV
KW - RLS algorithm
KW - parameter estimation
KW - polytopic systems
UR - https://www.scopus.com/pages/publications/85100949767
U2 - 10.1109/CAC51589.2020.9327258
DO - 10.1109/CAC51589.2020.9327258
M3 - 会议稿件
AN - SCOPUS:85100949767
T3 - Proceedings - 2020 Chinese Automation Congress, CAC 2020
SP - 3838
EP - 3842
BT - Proceedings - 2020 Chinese Automation Congress, CAC 2020
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2020 Chinese Automation Congress, CAC 2020
Y2 - 6 November 2020 through 8 November 2020
ER -