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Guidance and Control Algorithms for the Mars Entry, Descent and Landing Systems Analysis

机译:火星进入,下降和着陆系统分析的制导和控制算法

摘要

The purpose of the Mars Entry, Descent and Landing Systems Analysis (EDL-SA) study was to identify feasible technologies that will enable human exploration of Mars, specifically to deliver large payloads to the Martian surface. This paper focuses on the methods used to guide and control two of the contending technologies, a mid- lift-to-drag (L/D) rigid aeroshell and a hypersonic inflatable aerodynamic decelerator (HIAD), through the entry portion of the trajectory. The Program to Optimize Simulated Trajectories II (POST2) is used to simulate and analyze the trajectories of the contending technologies and guidance and control algorithms. Three guidance algorithms are discussed in this paper: EDL theoretical guidance, Numerical Predictor-Corrector (NPC) guidance and Analytical Predictor-Corrector (APC) guidance. EDL-SA also considered two forms of control: bank angle control, similar to that used by Apollo and the Space Shuttle, and a center-of-gravity (CG) offset control. This paper presents the performance comparison of these guidance algorithms and summarizes the results as they impact the technology recommendations for future study.
机译:火星进入,下降和着陆系统分析(EDL-SA)研究的目的是确定可行的技术,这些技术将使人类能够探索火星,尤其是向火星表面输送大型有效载荷。本文重点介绍了通过轨迹的入口部分来引导和控制两种竞争技术的方法,即中升至拖动(L / D)刚性机壳和高超声速充气气动减速器(HIAD)。优化仿真轨迹程序II(POST2)用于仿真和分析竞争技术以及制导和控制算法的轨迹。本文讨论了三种指导算法:EDL理论指导,数值预测器校正器(NPC)指导和分析预测器校正器(APC)指导。 EDL-SA还考虑了两种控制形式:类似于Apollo和航天飞机使用的倾斜角控制,以及重心(CG)偏移控制。本文介绍了这些制导算法的性能比较,并总结了影响制导技术以供将来研究的结果。

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