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Improved Correction System for Vibration Sensitive Inertial Angle of Attack Measurement Devices

机译:攻击测量装置振动敏感惯性角的改进校正系统

摘要

Inertial angle of attack (AoA) devices currently in use at NASA Langley Research Center (LaRC) are subject to inaccuracies due to centrifugal accelerations caused by model dynamics, also known as sting whip. Recent literature suggests that these errors can be as high as 0.25 deg. With the current AoA accuracy target at LaRC being 0.01 deg., there is a dire need for improvement. With other errors in the inertial system (temperature, rectification, resolution, etc.) having been reduced to acceptable levels, a system is currently being developed at LaRC to measure and correct for the sting-whip-induced errors. By using miniaturized piezoelectric accelerometers and magnetohydrodynamic rate sensors, not only can the total centrifugal acceleration be measured, but yaw and pitch dynamics in the tunnel can also be characterized. These corrections can be used to determine a tunnel's past performance and can also indicate where efforts need to be concentrated to reduce these dynamics. Included in this paper are data on individual sensors, laboratory testing techniques, package evaluation, and wind tunnel test results on a High Speed Research (HSR) model in the Langley 16-Foot Transonic Wind Tunnel.
机译:NASA兰利研究中心(LaRC)当前使用的惯性攻角(AoA)设备由于模型动力学(也称为known鞭)引起的离心加速度而存在误差。最新文献表明,这些误差可能高达0.25度。由于目前在LaRC的AoA精度目标为0.01度,因此迫切需要改进。随着惯性系统中的其他误差(温度,整流,分辨率等)已降低到可接受的水平,LaRC目前正在开发一种系统,用于测量和校正由鞭鞭引起的误差。通过使用微型压电加速度计和磁流体动力学速率传感器,不仅可以测量总离心加速度,而且还可以表征隧道的偏航和俯仰动力学。这些更正可用于确定隧道的过往性能,也可指示需要集中精力减少这些动态的地方。本文包括有关单个传感器,实验室测试技术,包装评估的数据,以及Langley 16英尺跨音速风洞中高速研究(HSR)模型上的风洞测试结果。

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