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Mars Entry Atmospheric Data System Trajectory Reconstruction Algorithms and Flight Results

机译:火星进入大气数据系统轨迹重构算法和飞行结果

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The Mars Entry Atmospheric Data System is a part of the Mars Science Laboratory, Entry, Descent, and Landing Instrumentation project. These sensors are a system of seven pressure transducers linked to ports on the entry vehicle forebody to record the pressure distribution during atmospheric entry. These measured surface pressures are used to generate estimates of atmospheric quantities based on modeled surface pressure distributions. Specifically, angle of attack, angle of sideslip, dynamic pressure, Mach number, and freestream atmospheric properties are reconstructed from the measured pressures. Such data allows for the aerodynamics to become decoupled from the assumed atmospheric properties, allowing for enhanced trajectory reconstruction and performance analysis as well as an aerodynamic reconstruction, which has not been possible in past Mars entry reconstructions. This paper provides details of the data processing algorithms that are utilized for this purpose. The data processing algorithms include two approaches that have commonly been utilized in past planetary entry trajectory reconstruction, and a new approach for this application that makes use of the pressure measurements. The paper describes assessments of data quality and preprocessing, and results of the flight data reduction from atmospheric entry, which occurred on August 5th, 2012.
机译:火星进入大气数据系统是火星科学实验室,进入,下降和着陆仪器项目的​​一部分。这些传感器是一个由七个压力传感器组成的系统,这些传感器与进入车辆前体的端口相连,以记录大气进入过程中的压力分布。这些测量的表面压力用于基于模型化的表面压力分布来生成大气量的估计值。具体而言,从测得的压力重建迎角,侧滑角,动压,马赫数和自由流大气特性。这样的数据使空气动力学与假定的大气特性脱钩,从而增强了轨迹重建和性能分析以及空气动力学重建,这在过去的火星入口重建中是不可能的。本文提供了用于此目的的数据处理算法的详细信息。数据处理算法包括过去的行星进入轨迹重建中常用的两种方法,以及利用压力测量的本应用程序的新方法。本文介绍了2012年8月5日对数据质量和预处理的评估,以及由于大气进入而导致的飞行数据减少的结果。

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