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Raman lidar measurements of aerosol and water vapour distribution in the atmosphere: A novel method of signal processing

机译:大气中的气溶胶和水蒸气分布的拉曼激光乐队测量:一种新的信号处理方法

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Raman lidar is one of the active remote sensors of atmospheric water vapour. This method also provides reliable information on microphysical parameters of aerosol particles in the atmosphere. Raman lidar uses elastic and inelastic backscatter to derive the profiles of key atmospheric parameters. The prime advantage of this method is the direct determination of particle backscatter and extinction coefficients along with atmospheric water vapor simultaneously. The optical part of lidar system employs a set of wavelength separating mirrors and high-spectral-resolution interference filters to separate the vibrational Raman signals from the strong elastic backscattering signal. Since Raman signal strengths are weak in nature than compared to the elastic, the detected signals need to be recorded using a unique data acquisition system. The special data acquisition system uses both analog and photon counting electronics, which allows enhanced dynamic range in the measured signals. In order to achieve the enhancement in measured profiles, a gluing technique is required to apply between the signals of analog and photon counting. This paper presents an efficient gluing algorithm to retrieve the profiles of elastic and Raman signals from the functional Raman lidar.
机译:拉曼LIDAR是大气水蒸气的主动远程传感器之一。该方法还提供了关于大气中气溶胶颗粒的微物理参数的可靠信息。拉曼利达利用弹性和非弹性反向散射来导出关键大气参数的曲线。该方法的主要优点是直接测定粒子后散射和消光系数以及同时的大气水蒸气。 LIDAR系统的光学部分采用一组波长分离镜和高光谱分辨率干涉滤波器,以将振动拉曼信号与强弹性反向散射信号分开。由于拉曼信号强度与与弹性相比较弱,因此需要使用唯一的数据采集系统进行检测到的信号。特殊数据采集系统使用模拟和光子计数电子设备,这允许在测量信号中提高动态范围。为了实现测量的曲线中的增强,需要一种胶合技术来应用于模拟和光子计数的信号之间。本文介绍了一种有效的胶合算法,可以从功能拉曼立激光雷达检索弹性和拉曼信号的曲线。

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