首页> 外文会议>Communications, 1989. ICC '89, BOSTONICC/89. 'World Prosperity Through Communications' >Analysis of pressure and Blanchard altitude errors computed using atmospheric data obtained from an F-18 aircraft flight
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Analysis of pressure and Blanchard altitude errors computed using atmospheric data obtained from an F-18 aircraft flight

机译:使用从F-18飞机飞行中获得的大气数据计算出的压力和Blanchard高度误差的分析

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Pressure altitude is commonly utilized as an altitude reference for an inertial navigation system (INS) to damp the error growth in the inherently unstable vertical channel. A precise altitude reference for use in the INS vertical channel can be obtained using the Blanchard algorithm, which computes altitude from atmospheric pressure, temperature, aircraft ground velocity, and wind velocity data. This paper computes both the pressure and Blanchard altitudes for an entire test flight of an F-18 aircraft from the atmospheric data measured during the flight. The flight repeats 4 cycles of a climb, level-off, dive, level-off trajectory. The altitude computed from GPS during flight is considered to be the truth altitude. The errors in the pressure and Blanchard altitudes are computed and compared. In addition both altitude errors are analyzed in order to determine the scale factor, bias offset, and time delay utilizing the least square error fit method. The Blanchard altitude is a much more precise altitude reference than pressure altitude during actual flight of an F-18 aircraft.
机译:压力高度通常用作惯性导航系统(INS)的高度参考,以抑制固有不稳定的垂直通道中的误差增长。可以使用Blanchard算法获得用于INS垂直通道的精确海拔参考,该算法根据大气压力,温度,飞机地面速度和风速数据计算海拔高度。本文根据飞行过程中测得的大气数据计算F-18飞机整个测试飞行的压力高度和Blanchard高度。飞行重复爬升,平稳,俯冲,平稳轨迹的4个周期。飞行中从GPS计算出的高度被认为是真实高度。计算并比较了压力和Blanchard高度的误差。此外,还使用最小二乘误差拟合方法分析了两个海拔误差,以确定比例因子,偏差偏移和时间延迟。在F-18飞机实际飞行期间,布兰查德(Blanchard)高度比压力高度要精确得多。

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