Improved correction methods for measuring altitude by Radar and Barometer

W. Åsen
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引用次数: 1

Abstract

Geometric altitude of air targets may be found from radar or barometric measurement. However, radar rays are affected by changes in refractive index gradients which result in non-normal bending of rays. Similarly, precision of barometric altitude is affected by the atmospheric deviation away from barometer standard calibrated sea level temperature and pressure, and deviation away from standard temperature lapse rate. Together these effects may lead to hundreds of meters of difference in match between barometric geometric height and radar geometric height. In this report we are proposing two alternative altitude correction methods. Both methods are applied to pairs of ground radar and barometry altitude of civilian airplanes. The most promising of the methods relies on using the meteorological atmospheric forecasting model AROME Arctic. For several of our measurement series this procedure reduces averaged difference between barometric altitude and radar altitude from 400–700 meters down to about 100 meters.
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改进了雷达和气压计测高的校正方法
空中目标的几何高度可以通过雷达或气压测量得到。然而,雷达射线受到折射率梯度变化的影响,导致射线的非正常弯曲。同样,大气对气压计标准校准海平面温度和压力的偏差以及对标准温度递减率的偏差也会影响气压计高度的精度。这些影响加在一起,可能导致大气几何高度与雷达几何高度的匹配差达数百米。在本报告中,我们提出了两种可供选择的高度校正方法。这两种方法都适用于民用飞机的地面雷达和气压高度对。其中最有前途的方法是使用AROME北极气象大气预报模式。对于我们的几个测量系列,该程序将气压高度和雷达高度之间的平均差从400-700米降低到大约100米。
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