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Powered-descent trajectory optimization scheme for Mars landing
Authors:Rongjie Liu  Shihua Li  Xisong Chen  Lei Guo
Institution:1. School of Automation, Southeast University, Nanjing 210096, China;2. School of Automation Science and Electrical Engineering, Beihang University, Beijing 100191, China
Abstract:This paper presents a trajectory optimization scheme for powered-descent phase of Mars landing with considerations of disturbance. Firstly, θ–DθD method is applied to design a suboptimal control law with descent model in the absence of disturbance. Secondly, disturbance is estimated by disturbance observer, and the disturbance estimation is as feedforward compensation. Then, semi-global stability analysis of the composite controller consisting of the nonlinear suboptimal controller and the disturbance feedforward compensation is proposed. Finally, to verify the effectiveness of proposed control scheme, an application including relevant simulations on a Mars landing mission is demonstrated.
Keywords:Trajectory optimization  Powered-descent  Mars landing  θ&ndash  Dθ&ndash" target="_blank">gif" overflow="scroll">θ&ndash  D suboptimal method  Disturbance observer
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