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Effects of spectral discrimination in high-spectral-resolution lidar on the retrieval errors for atmospheric aerosol optical properties

机译:高光谱分辨率激光雷达中的光谱分辨对大气气溶胶光学特性反演误差的影响

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This paper presents detailed analysis about the effects of spectral discrimination on the retrieval errors for atmospheric aerosol optical properties in high-spectral-resolution lidar (HSRL). To the best of our knowledge, this is the first study that focuses on this topic comprehensively, and our goal is to provide some heuristic guidelines for the design of the spectral discrimination filter in HSRL. We first introduce a theoretical model for retrieval error evaluation of an HSRL instrument with a general three-channel configuration. The model only takes the error sources related to the spectral discrimination parameters into account, while other error sources not associated with these focused parameters are excluded on purpose. Monte Carlo (MC) simulations are performed to validate the correctness of the theoretical model. Results from both the model and MC simulations agree very well, and they illustrate one important, although not well realized, fact: a large molecular transmittance and a large spectral discrimination ratio (SDR, i.e., ratio of the molecular transmittance to the aerosol transmittance) are beneficial to promote the retrieval accuracy. More specifically, we find that a large SDR can reduce retrieval errors conspicuously for atmosphere at low altitudes, while its effect on the retrieval for high altitudes is very limited. A large molecular transmittance contributes to good retrieval accuracy everywhere, particularly at high altitudes, where the signal-to-noise ratio is small. Since the molecular transmittance and SDR are often trade-offs, we suggest considering a suitable SDR for higher molecular transmittance instead of using unnecessarily high SDR when designing the spectral discrimination filter. These conclusions are expected to be applicable to most of the HSRL instruments, which have similar configurations as the one discussed here.
机译:本文对光谱识别对高光谱分辨率激光雷达(HSRL)中大气气溶胶光学特性的反演误差的影响进行了详细分析。据我们所知,这是首次全面研究该主题的研究,我们的目标是为HSRL中的频谱鉴别滤波器的设计提供一些启发式指导。我们首先介绍一种用于一般三通道配置的HSRL仪器的检索误差评估的理论模型。该模型仅考虑与光谱识别参数有关的误差源,而有意排除与这些聚焦参数不相关的其他误差源。进行蒙特卡洛(MC)仿真以验证理论模型的正确性。来自模型和MC模拟的结果非常吻合,并且它们说明了一个重要的事实,尽管尚未很好地实现:事实:较大的分子透射率和较大的光谱辨别率(SDR,即分子透射率与气溶胶透射率之比)有利于提高检索准确性。更具体地说,我们发现大的SDR可以显着减少低海拔大气的检索误差,而对于高海拔大气的检索误差却非常有限。较大的分子透射率可在任何地方(尤其是在信噪比较小的高海拔地区)实现良好的检索精度。由于分子透射率和SDR通常是权衡取舍的,因此我们建议在设计光谱鉴别滤波器时考虑为更高的分子透射率选择合适的SDR,而不要使用不必要的高SDR。预期这些结论将适用于大多数HSRL仪器,它们的配置与此处讨论的配置类似。

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