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The effects of pressure sensor acoustics on airdata derived from a High-angle-of-attack Flush Airdata Sensing (HI-FADS) system

机译:压力传感器的声学特性对来自高攻角冲洗空气数据传感(HI-FADS)系统的空气数据的影响

摘要

The accuracy of a nonintrusive high angle-of-attack flush airdata sensing (HI-FADS) system was verified for quasi-steady flight conditions up to 55 deg angle of attack during the F-18 High Alpha Research Vehicle (HARV) Program. The system is a matrix of nine pressure ports arranged in annular rings on the aircraft nose. The complete airdata set is estimated using nonlinear regression. Satisfactory frequency response was verified to the system Nyquist frequency (12.5 Hz). The effects of acoustical distortions within the individual pressure sensors of the nonintrusive pressure matrix on overall system performance are addressed. To quantify these effects, a frequency-response model describing the dynamics of acoustical distortion is developed and simple design criteria are derived. The model adjusts measured HI-FADS pressure data for the acoustical distortion and quantifies the effects of internal sensor geometries on system performance. Analysis results indicate that sensor frequency response characteristics very greatly with altitude, thus it is difficult to select satisfactory sensor geometry for all altitudes. The solution used presample filtering to eliminate resonance effects, and short pneumatic tubing sections to reduce lag effects. Without presample signal conditioning the system designer must use the pneumatic transmission line to attenuate the resonances and accept the resulting altitude variability.
机译:在F-18高阿尔法研究飞行器(HARV)计划期间,针对高达55度攻角的准稳定飞行条件,验证了非侵入式高攻角冲气数据传感(HI-FADS)系统的准确性。该系统是九个压力端口的矩阵,这些压力端口排列在飞机机头上的环形圈中。使用非线性回归估计完整的航空数据集。对系统的奈奎斯特频率(12.5 Hz)验证了令人满意的频率响应。解决了非侵入式压力矩阵的各个压力传感器中的声音失真对整体系统性能的影响。为了量化这些影响,开发了描述声学失真动态的频率响应模型,并推导了简单的设计标准。该模型针对声失真调整测量的HI-FADS压力数据,并量化内部传感器几何形状对系统性能的影响。分析结果表明,传感器的频率响应特性随海拔高度变化非常大,因此很难为所有海拔高度选择令人满意的传感器几何形状。该解决方案使用了预采样过滤来消除共振效应,并使用短的气动管段来减少滞后效应。没有预采样信号调节,系统设计人员必须使用气动传输线来衰减共振并接受由此引起的高度变化。

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