Novel Prescribed Performance Control Scheme for Flexible Hypersonic Flight Vehicles with Nonaffine Dynamics and Neural Approximation

Author:

Liu Yong1ORCID,Li Gang1ORCID,Li Yuchen2,Wu Yahui3

Affiliation:

1. Air and Missile Defense College, Air Force Engineering University, Xi’an 710051, China

2. Air Traffic Control and Navigation College, Air Force Engineering University, Xi’an 710051, China

3. Radar Sergeant School, Air Force Early Warning Academy, Wuhan 430345, China

Abstract

This study develops a novel neural-approximation-based prescribed performance controller for flexible hypersonic flight vehicles (HFVs). Firstly, a new prescribed performance mechanism is exploited, which develops new performance functions guaranteeing velocity and altitude tracking errors with small overshoots. Compared with the existing prescribed performance mechanism, it has better preselected transient and steady-state performance. Then, the nonaffine model of HFV is decomposed into a velocity subsystem and an altitude subsystem. A prescribed performance-based proportional-integral controller is designed in the velocity subsystem. In the altitude subsystem, the model is expressed as a nonaffine pure feedback form, and control inputs are derived from neural approximations. In order to reduce the amount of computation, only one neural network approximator is used to approximate the subsystem uncertainties, and an advanced regulation algorithm is applied to the devise adaptive law for neural estimation. At the same time, the complex design process of back-stepping can be avoided. Finally, numerical simulation results are presented to verify the efficiency of the design.

Funder

Young Talent Support Project for Military Science and Technology

Publisher

Hindawi Limited

Subject

Aerospace Engineering

Reference37 articles.

1. Adaptive controller design for a switched model of air-breathing hypersonic vehicles

2. Adaptive backstepping control for air-breathing hypersonic vehicles with input nonlinearities

3. State-estimator-integrated robust adaptive tracking control for flexible air-breathing hypersonic vehicle with noisy measurements;X. Tao;IEEE Transactions on Instrumentation and Measurement,2019

4. Adaptive Neural Control of Hypersonic Vehicles with Actuator Constraints

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1. Hypersonic Flight Control With Vector Field Orbital Path;2022 IEEE International Conference on Industry 4.0, Artificial Intelligence, and Communications Technology (IAICT);2022-07-28

2. Backstepping Control Based on Constrained Command Filter for Hypersonic Flight Vehicles with AOA and Actuator Constraints;International Journal of Aerospace Engineering;2021-09-02

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