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Ground return recognition at airborne cw Do

机译:机载CW Do的地面回波识别

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Abstract: An airborne cw Doppler lidar measures the Doppler shift of aerosols in the focal volume which are moving with the wind, but also stronger reflections from the ground below the aircraft can be registered. Now one problem is to distinguish between the ground return and the aerosol signal. One possibility is to use the intensity of the back scattered signal, but the ground return may sometimes be very weak, for example at a higher flight level or over sea. Another way to deal with this problem is to use the statistical properties of the back scattered light also known as speckle effect. The back scattered light of different types of targets like hard target, aerosol, and cloud seem to have different correlation times. At a pulsed Doppler lidar this statistical approach has to be modified due to the short correlation time of the laser pulse itself, but a cross correlation between emitted and received pulse may be a solution. This paper will present an analysis of the correlation time at the practical example of a cw Doppler lidar measurement obtained with the system ADOLAR. The measured wind field will also be discussed.!6
机译:摘要:机载连续多普勒激光雷达可以测量在随风移动的焦点空间内的气溶胶的多普勒频移,而且可以记录到飞机下方地面的更强反射。现在的一个问题是区分地面回流和气溶胶信号。一种可能性是利用反向散射信号的强度,但是地面回波有时可能非常弱,例如在较高的飞行高度或海上。解决此问题的另一种方法是使用后向散射光的统计属性,也称为斑点效应。不同类型目标(如硬目标,气溶胶和云)的后向散射光似乎具有不同的相关时间。在脉冲多普勒激光雷达上,由于激光脉冲本身的相关时间短,因此必须修改此统计方法,但是可以解决发射和接收脉冲之间的互相关问题。本文将通过使用ADOLAR系统获得的连续多普勒激光雷达测量的实际示例,对相关时间进行分析。还将讨论测得的风场。!6

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