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Design and Analysis of Morpheus Lander Flight Control System
Author(s) -
Jiann-Woei Jang,
Yang Lee,
Mathew Fritz,
Louis Nguyen,
Wyatt Johnson,
Jeremy Hart
Publication year - 2014
Publication title -
aiaa/aas astrodynamics specialist conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2014-4115
Subject(s) - computer science , aerospace engineering , control (management) , control system , aeronautics , engineering , artificial intelligence , electrical engineering
The Morpheus Lander is a vertical takeoff and landing test bed vehicle developed to demonstrate the system performance of the Guidance, Navigation and Control (GN&C) system capability for the integrated autonomous landing and hazard avoidance system hardware and software. The Morpheus flight control system design must be robust to various mission profiles. This paper presents a design methodology for employing numerical optimization to develop the Morpheus flight control system. The design objectives include attitude tracking accuracy and robust stability with respect to rigid body dynamics and propellant slosh. Under the assumption that the Morpheus 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 control systems in the presence of parametric uncertainty. Both control gains in the inner attitude control loop and guidance gains in the outer position control loop are designed to maximize the vehicle performance while ensuring robustness. The flight control system designs provided herein have been demonstrated to provide stable control systems in both Draper Ares Stability Analysis Tool (ASAT) and the NASA/JSC Trick-based Morpheus time domain simulation.

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