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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Simultaneous retrieval of aerosols and ocean properties: A classic inverse modeling approach. I. Analytic Jacobians from the linearized CAO-DISORT model
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Simultaneous retrieval of aerosols and ocean properties: A classic inverse modeling approach. I. Analytic Jacobians from the linearized CAO-DISORT model

机译:同时获取浮质和海洋特性:一种经典的逆向建模方法。 I.线性化CAO-DISORT模型的解析雅可比行列式

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摘要

In this paper and the sequel, we investigate the application of classic inverse methods based on iterative least-squares cost-function minimization to the simultaneous retrieval of aerosol and ocean properties from visible and near infrared spectral radiance measurements such as those from the SeaWiFS and MODIS instruments. Radiance measurements at the satellite are simulated directly using an accurate coupled atmosphere-ocean-discrete-ordinate radiative transfer (CAO-DISORT) code as the main component of the forward model. For this kind of cost-function inverse problem, we require the forward model to generate weighting functions (radiance partial derivatives) with respect to the aerosol and marine properties to be retrieved, and to other model parameters which are sources of error in the retrievals. In this paper, we report on the linearization of the CAO-DISORT model. This linearization provides a complete analytic differentiation of the coupled-media radiative transfer theory, and it allows the model to generate analytic weighting functions for any atmospheric or marine parameter. For high solar zenith angles, we give an implementation of the pseudo-spherical (P-S) approach to solar beam attenuation in the atmosphere in the linearized model. We summarize a number of performance enhancements such as the use of an exact single-scattering calculation to improve accuracy. We derive inherent optical property inputs for the linearized CAO-DISORT code for a simple 2-parameter bio-optical model for the marine environment coupled to a 2-parameter bimodal atmospheric aerosol medium. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在本文和后续文章中,我们研究基于最小二乘迭代最小二乘成本函数最小化的经典逆方法在同时从可见光和近红外光谱辐射度测量(例如来自SeaWiFS和MODIS的测量)中同时获取气溶胶和海洋特性的应用仪器。使用精确的大气-海洋-离散坐标辐射传输(CAO-DISORT)代码作为正向模型的主要组成部分,直接模拟了卫星处的辐射测量。对于这种成本函数反问题,我们要求前向模型针对要检索的气溶胶和海洋特性以及作为检索误差来源的其他模型参数生成权重函数(辐射偏导数)。在本文中,我们报告了CAO-DISORT模型的线性化。这种线性化提供了耦合介质辐射传输理论的完整解析区分,并且允许模型为任何大气或海洋参数生成解析加权函数。对于高太阳天顶角,我们在线性化模型中给出了伪球形(P-S)方法来实现大气中太阳光束衰减的实现。我们总结了许多性能增强功能,例如使用精确的单散射计算来提高准确性。我们推导了线性化CAO-DISORT代码的固有光学特性输入,该线性化CAO-DISORT代码是用于海洋环境的简单2参数生物光学模型,耦合了2参数双峰大气气溶胶介质。 (c)2006 Elsevier Ltd.保留所有权利。

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