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A Full-Envelope Air Data Calibration and Three-Dimensional Wind Estimation Method Using Global Output-Error Optimization and Flight-Test Techniques

机译:利用全局输出误差优化和飞行测试技术的全包络空气数据校准和三维风估计方法

摘要

A novel, efficient air data calibration method is proposed for aircraft with limited envelopes. This method uses output-error optimization on three-dimensional inertial velocities to estimate calibration and wind parameters. Calibration parameters are based on assumed calibration models for static pressure, angle of attack, and flank angle. Estimated wind parameters are the north, east, and down components. The only assumptions needed for this method are that the inertial velocities and Euler angles are accurate, the calibration models are correct, and that the steady-state component of wind is constant throughout the maneuver. A two-minute maneuver was designed to excite the aircraft over the range of air data calibration parameters and de-correlate the angle-of-attack bias from the vertical component of wind. Simulation of the X-48B (The Boeing Company, Chicago, Illinois) aircraft was used to validate the method, ultimately using data derived from wind-tunnel testing to simulate the un-calibrated air data measurements. Results from the simulation were accurate and robust to turbulence levels comparable to those observed in flight. Future experiments are planned to evaluate the proposed air data calibration in a flight environment.
机译:提出了一种新颖,有效的航空数据校准方法。该方法对三维惯性速度使用输出误差优化来估计校准和风参数。校准参数基于假定的校准模型,包括静压,攻角和后角。估计的风参数为北,东和下风分量。该方法唯一需要的假设是惯性速度和欧拉角是准确的,校准模型是正确的,并且在整个机动过程中风的稳态分量都是恒定的。设计了一个两分钟的演习,以激发飞机在空中数据校准参数的范围内,并使迎角偏向与风的垂直分量不相关。 X-48B(伊利诺伊州芝加哥的波音公司)飞机的仿真被用来验证该方法,最终使用从风洞测试获得的数据来仿真未校准的空气数据测量。模拟的结果对湍流水平具有精确性和鲁棒性,与飞行中观察到的结果相当。计划未来的实验,以评估在飞行环境中建议的空气数据校准。

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    Taylor Brian R.;

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  • 年度 2012
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