Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime

For the existence of aerodynamic coupling and big turbulence of reentry vehicle in large aerodynamic flight status, Conventional method for RCS controller designing is difficult to track the bank angle command quickly and accurately. To solve the problem, according to the feature that the lateral/di...

Full description

Bibliographic Details
Format: Article
Language:zho
Published: The Northwestern Polytechnical University 2019-02-01
Series:Xibei Gongye Daxue Xuebao
Subjects:
Online Access:https://www.jnwpu.org/articles/jnwpu/full_html/2019/01/jnwpu2019371p21/jnwpu2019371p21.html
id doaj-8b8b7593cfb3422eae6ee52ccc019dc9
record_format Article
spelling doaj-8b8b7593cfb3422eae6ee52ccc019dc92021-05-02T19:21:48ZzhoThe Northwestern Polytechnical UniversityXibei Gongye Daxue Xuebao1000-27582609-71252019-02-01371212710.1051/jnwpu/20193710021jnwpu2019371p21Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime012School of Astronautics, Northwestern Polytechnical UniversitySchool of Astronautics, Northwestern Polytechnical UniversitySchool of Astronautics, Northwestern Polytechnical UniversityFor the existence of aerodynamic coupling and big turbulence of reentry vehicle in large aerodynamic flight status, Conventional method for RCS controller designing is difficult to track the bank angle command quickly and accurately. To solve the problem, according to the feature that the lateral/directional coupling is significant and the yaw channel is more effective and stronger to turbulence when tracking the bank angle, a strategy is proposed by using the roll and yaw channel simultaneously to control the bank angle dynamic. Double loop dynamic inversion controller is designed in which the bank angle loop conduct as outer loop and the roll and yaw angle rate loop as inner loop. The convergence of sideslip angle is guaranteed by improving the design of roll angle rate controller and the influence of the controller parameters to converge mode is analyzed. PWPF modulator is applied to convert command moment into pulse signals. Numerical simulation is carried out to verify the benefits of the proposed control method, the results shows that the present method solved the problem that RCS controller designed in conventional manner, and improve control ability of RCS in large aerodynamic condition.https://www.jnwpu.org/articles/jnwpu/full_html/2019/01/jnwpu2019371p21/jnwpu2019371p21.htmlreentry vehiclelateral flight controlreaction control systemdynamic inversion
collection DOAJ
language zho
format Article
sources DOAJ
title Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime
spellingShingle Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime
Xibei Gongye Daxue Xuebao
reentry vehicle
lateral flight control
reaction control system
dynamic inversion
title_short Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime
title_full Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime
title_fullStr Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime
title_full_unstemmed Lateral/Directional RCS Attitude Control for Lift Reentry Vehicle in Large Dynamic Pressure Regime
title_sort lateral/directional rcs attitude control for lift reentry vehicle in large dynamic pressure regime
publisher The Northwestern Polytechnical University
series Xibei Gongye Daxue Xuebao
issn 1000-2758
2609-7125
publishDate 2019-02-01
description For the existence of aerodynamic coupling and big turbulence of reentry vehicle in large aerodynamic flight status, Conventional method for RCS controller designing is difficult to track the bank angle command quickly and accurately. To solve the problem, according to the feature that the lateral/directional coupling is significant and the yaw channel is more effective and stronger to turbulence when tracking the bank angle, a strategy is proposed by using the roll and yaw channel simultaneously to control the bank angle dynamic. Double loop dynamic inversion controller is designed in which the bank angle loop conduct as outer loop and the roll and yaw angle rate loop as inner loop. The convergence of sideslip angle is guaranteed by improving the design of roll angle rate controller and the influence of the controller parameters to converge mode is analyzed. PWPF modulator is applied to convert command moment into pulse signals. Numerical simulation is carried out to verify the benefits of the proposed control method, the results shows that the present method solved the problem that RCS controller designed in conventional manner, and improve control ability of RCS in large aerodynamic condition.
topic reentry vehicle
lateral flight control
reaction control system
dynamic inversion
url https://www.jnwpu.org/articles/jnwpu/full_html/2019/01/jnwpu2019371p21/jnwpu2019371p21.html
_version_ 1721488436992409600