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Ares I Flight Control System DesignThe Ares I launch vehicle represents a challenging flex-body structural environment for flight control system design. This paper presents a design methodology for employing numerical optimization to develop the Ares I flight control system. The design objectives include attitude tracking accuracy and robust stability with respect to rigid body dynamics, propellant slosh, and flex. Under the assumption that the Ares I time-varying dynamics and control system can be frozen over a short period of time, the flight controllers are designed to stabilize all selected frozen-time launch control systems in the presence of parametric uncertainty. Flex filters in the flight control system are designed to minimize the flex components in the error signals before they are sent to the attitude controller. To ensure adequate response to guidance command, step response specifications are introduced as constraints in the optimization problem. Imposing these constraints minimizes performance degradation caused by the addition of the flex filters. The first stage bending filter design achieves stability by adding lag to the first structural frequency to phase stabilize the first flex mode while gain stabilizing the higher modes. The upper stage bending filter design gain stabilizes all the flex bending modes. The flight control system designs provided here have been demonstrated to provide stable first and second stage control systems in both Draper Ares Stability Analysis Tool (ASAT) and the MSFC 6DOF nonlinear time domain simulation.
Document ID
20100035660
Acquisition Source
Marshall Space Flight Center
Document Type
Conference Paper
Authors
Jang, Jiann-Woei
(Draper (Charles Stark) Lab., Inc. Houston, TX, United States)
Alaniz, Abran
(Draper (Charles Stark) Lab., Inc. Houston, TX, United States)
Hall, Robert
(Draper (Charles Stark) Lab., Inc. Houston, TX, United States)
Bedrossian, Nazareth
(Draper (Charles Stark) Lab., Inc. Houston, TX, United States)
Hall, Charles
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Ryan, Stephen
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Jackson, Mark
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Date Acquired
August 25, 2013
Publication Date
August 2, 2010
Subject Category
Launch Vehicles And Launch Operations
Report/Patent Number
M10-0788
Report Number: M10-0788
Meeting Information
Meeting: AIAA Guidance, Navigation, and Control Conference
Location: Toronto
Country: Canada
Start Date: August 2, 2010
End Date: August 5, 2010
Distribution Limits
Public
Copyright
Public Use Permitted.
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