• Electronics Optics & Control
  • Vol. 30, Issue 11, -1 (2023)
ZHANG Han1, ZHANG Shaojie2, and JI Kun2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3969/j.issn.1671-637x.2023.11.006 Cite this Article
    ZHANG Han, ZHANG Shaojie, JI Kun. Incremental Adaptive Dynamic Programming for Helicopter Velocity Control Under Input Delay and Saturation[J]. Electronics Optics & Control, 2023, 30(11): -1 Copy Citation Text show less
    References

    [1] HU J S, GU H B.Survey on flight control technology for large-scale helicopter[J].International Journal of Aerospace Engineering, 2017, 2017:5309403.

    [3] JEONG H H, SUK J Y, KIM B S, et al.A study on ADS-33E with application to the assessment of handling quality for unmanned rotorcraft[J].Journal of the Korean Society for Aeronautical & Space Sciences, 2012, 40(3):243-250.

    [8] PAVEL M D, PERUMAL S, OLAF S, et al.Incremental nonlinear dynamic inversion for the Apache AH-64 helicopter control[J].Journal of the American Helicopter Society, 2020, 65(2):1-16.

    [9] WU W.A general method for closed-loop inverse simulation of helicopter maneuver flight[J].Chinese Journal of Aeronautics, 2017, 30(6):1799-1808.

    [10] YUAN Y, THOMSON, D, CHEN R L.Propeller control strategy for coaxial compound helicopters[J].Proceedings of the Institution of Mechanical Engineers, Part G:Journal of Aerospace Engineering, 2019, 233(10):3775-3789.

    [11] KUMAR M V, SAMPATH P, SURESH S, et al.Design of a stability augmentation system for a helicopter using LQR control and ADS-33 handling qualities specifications[J].Aircraft Engineering and Aerospace Technology, 2008, 80(2):111-123.

    [12] WERBOS P.Advanced forecasting methods for global crisis warning and models of intelligence[J].General Systems, 1977, 22:25-38.

    [13] ZHOU Y, KAMPEN E J, CHU Q P.Incremental approximate dynamic programming for nonlinear adaptive tracking control with partial observability[J].Journal of Guidance, Control, and Dynamics, 2018, 41(12):2554-2567.

    [14] ZHANG H G, CUI L L, ZHANG X, et al.Data-driven robust approximate optimal tracking control for unknown general nonlinear systems using adaptive dynamic programming method[J].IEEE Transactions on Neural Networks, 2011, 22(12):2226-2236.

    [15] GAO Q, WEI X T, LI D H, et al.Tracking control for a quadrotor via dynamic surface control and adaptive dynamic programming[J].International Journal of Control, Automation and Systems, 2022, 20(1):349-363.

    [16] LIU D R, XUE S, ZHAO B, et al.Adaptive dynamic programming for control:a survey and recent advances[J].IEEE Transactions on Systems, Man, and Cybernetics:Systems, 2021, 51(1):142-160.

    [17] ZHOU Y, KAMPEN E J, CHU Q P.Nonlinear adaptive flight control using incremental approximate dynamic programming and output feedback[J].Journal of Guidance, Control, and Dynamics, 2017, 40(2):489-496.

    [18] PADFIELD G D.Helicopter flight dynamics:the theory and application of flying qualities and simulation modelling[M].Hoboken:John Wiley & Sons, 2008.

    [19] ARTSTEIN Z.Linear systems with delayed controls:a reduction[J].IEEE Transactions on Automatic Control, 1982, 27(4):869-879.

    [20] ROHOLLAH M, SARANGAPANI J.Optimal adaptive control of uncertain nonlinear continuous-time systems with input and state delays[J].IEEE Transactions on Neural Networks and Learning Systems, 2021, 34(6):3195-3204.

    [21] ROHOLLAH M, SARANGAPANI J.Optimal control of linear continuous-time systems in the presence of state and input delays with application to a chemical reactor[C]//American Control Conference (ACC).Denver:IEEE, 2020:999-1004.

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    ZHANG Han, ZHANG Shaojie, JI Kun. Incremental Adaptive Dynamic Programming for Helicopter Velocity Control Under Input Delay and Saturation[J]. Electronics Optics & Control, 2023, 30(11): -1
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