Title of article :
Comparative analysis of architectures for the control loop of launch vehicles during atmospheric flight
Author/Authors :
A Saunois، نويسنده , , Philippe، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
7
From page :
150
To page :
156
Abstract :
Most of architectures used for the control loop of launch vehicles are based on attitude angle, attitude rate and lateral acceleration feedbacks. Related controllers are usually chosen to be stable. The main purpose of this paper is to give a comparison between a few architectures, pointing out the benefits of an unstable attitude angle feedback design for the control of an aerodynamically unstable launch vehicle. Such a design indeed is appropriate to reduce significantly the aerodynamic load during atmospheric flight. This is an issue of practical interest as it has become a design driver for mechanical sizing of modern launchers. per recalls the various goals the control loop is trying to reach all along the atmospheric flight (stability, set point tracking, aerodynamic load minimization …). For each phase of the flight, priorities are discussed. The paper then focuses on two critical phases of the atmospheric flight, i.e. high dynamic pressure period and atmospheric stages separation.
Keywords :
Acceleration feedback , Launch vehicle control loop , Architectures , Unstable attitude angle feedback
Journal title :
Aerospace Science and Technology
Serial Year :
2009
Journal title :
Aerospace Science and Technology
Record number :
2229858
Link To Document :
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