Two-channel optimal discrete law of control of spacecraft with aerodynamic and inertial asymmetry during descent in Mars atmosphere

Оптимальный Дискретный, Закон Управления, Космического Аппарата, Атмосфере Марса
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引用次数: 1

Abstract

At present, spacecraft attitude stability is of great importance for both state and private space companies and agencies. In this paper, we consider a mathematical model describing perturbed motion of spacecraft as a rigid body with significant aerodynamic and inertial asymmetry relative to the center of mass in the rarefied atmosphere of Mars. The aim of this work is to obtain an approximate discrete optimized law of controlling the spacecraft attitude using Bellman's dynamic programming and averaging methods. Discrete systems of equations used in the work were solved using the Z-transform method. The reliability of the obtained control laws was confirmed by the results of numerical integration by the numerical Euler method.
具有气动和惯性不对称的航天器在火星大气中下降时的双通道最优离散控制律
目前,航天器的姿态稳定性对国家和私营航天公司和机构来说都是非常重要的。在本文中,我们考虑了一个数学模型,描述了航天器作为一个刚体在火星稀薄大气中相对于质心具有明显的气动和惯性不对称性的扰动运动。本文的目的是利用Bellman动态规划和平均方法,得到航天器姿态控制的近似离散优化规律。用z变换方法求解了工作中用到的离散方程组。通过数值欧拉法的数值积分结果验证了所得到控制律的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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