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Trajectory Reconstruction and Uncertainty Analysis using Mars Science Laboratory Pre-Flight Scale Model Aeroballistic Testing

机译:火星科学实验室飞行前规模模型气弹测试的轨迹重建和不确定性分析

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As part of the Mars Science Laboratory (MSL) trajectory reconstruction effort at NASA Langley Research Center, free-flight aeroballistic experiments of instrumented MSL scale models was conducted at Aberdeen Proving Ground in Maryland. The models carried an inertial measurement unit (IMU) and a flush air data system (FADS) similar to the MSL Entry Atmospheric Data System (MEADS) that provided data types similar to those from the MSL entry. Multiple sources of redundant data were available, including tracking radar and on-board magnetometers. These experimental data enabled the testing and validation of the various tools and methodologies that will be used for MSL trajectory reconstruction. The aerodynamic parameters Mach number, angle of attack, and sideslip angle were estimated using minimum variance with a priori to combine the pressure data and pre-flight computational fluid dynamics (CFD) data. Both linear and non-linear pressure model terms were also estimated for each pressure transducer as a measure of the errors introduced by CFD and transducer calibration. Parameter uncertainties were estimated using a "consider parameters" approach.
机译:作为NASA兰利研究中心火星科学实验室(MSL)轨迹重建工作的一部分,在马里兰州的阿伯丁试验场进行了仪器MSL比例模型的自由飞行气动实验。这些模型带有类似于MSL条目大气数据系统(MEADS)的惯性测量单元(IMU)和冲洗空气数据系统(FADS),提供的数据类型与来自MSL条目的数据类型相似。可以使用多种冗余数据源,包括跟踪雷达和车载磁力计。这些实验数据可以测试和验证将用于MSL轨迹重建的各种工具和方法。空气动力学参数马赫数,迎角和侧滑角是使用最小方差并与压力数据和飞行前计算流体力学(CFD)数据相结合的先验估计的。还估计了每个压力传感器的线性和非线性压力模型项,以作为CFD和传感器校准所引入误差的度量。使用“考虑参数”方法估计参数不确定性。

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