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Effects of Atmospheric Refraction on an Airborne Weather Radar Detection and Correction Method

机译:大气折射对机载气象雷达探测和校正方法的影响

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This study investigates the effect of atmospheric refraction, affected by temperature, atmospheric pressure, and humidity, on airborne weather radar beam paths. Using three types of typical atmospheric background sounding data, we established a simulation model for an actual transmission path and a fitted correction path of an airborne weather radar beam during airplane take-offs and landings based on initial flight parameters and X-band airborne phased-array weather radar parameters. Errors in an ideal electromagnetic beam propagation path are much greater than those of a fitted path when atmospheric refraction is not considered. The rates of change in the atmospheric refraction index differ with weather conditions and the radar detection angles differ during airplane take-off and landing. Therefore, the airborne radar detection path must be revised in real time according to the specific sounding data and flight parameters. However, an error analysis indicates that a direct linear-fitting method produces significant errors in a negatively refractive atmosphere; a piecewise-fitting method can be adopted to revise the paths according to the actual atmospheric structure. This study provides researchers and practitioners in the aeronautics and astronautics field with updated information regarding the effect of atmospheric refraction on airborne weather radar detection and correction methods.
机译:这项研究调查了温度,大气压力和湿度对大气折射对机载气象雷达波束路径的影响。利用三种典型的大气背景探测数据,我们基于初始飞行参数和X波段机载相控系统,建立了飞机起飞和着陆期间机载气象雷达波束的实际传输路径和拟合校正路径的仿真模型。阵列天气雷达参数。当不考虑大气折射时,理想电磁束传播路径的误差要比拟合路径的误差大得多。飞机在起飞和降落期间,大气折射率的变化率随天气条件而变化,雷达检测角度也不同。因此,必须根据特定的探测数据和飞行参数实时修改机载雷达检测路径。但是,误差分析表明,直接线性拟合方法在负折射气氛中会产生很大的误差;可以采用分段拟合的方法根据实际大气结构修正路径。这项研究为航空航天领域的研究人员和从业人员提供了有关大气折射对机载气象雷达检测和校正方法的影响的最新信息。

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