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首页> 外文期刊>Remote Sensing >Environmental and Sensor Limitations in Optical Remote Sensing of Coral Reefs: Implications for Monitoring and Sensor Design
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Environmental and Sensor Limitations in Optical Remote Sensing of Coral Reefs: Implications for Monitoring and Sensor Design

机译:珊瑚礁光学遥感中的环境和传感器局限性:对监测和传感器设计的启示

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A generic method was developed for analysing the capabilities of optical remote sensing of aquatic systems in terms of environmental components and imaging sensor configurations. The method was based on a component based model of the entire system in which not only benthic composition but other environmental components such as water inherent optical properties (IOPs), bathymetry, sun elevation, wind speed and sensor noise characteristics were defined by datasets with the potential to include across-image variation. The model was applied to data from Pacific Ocean reefs in an airborne sensor context to estimate the primary environmental or sensor factors confounding discrimination of benthic mixtures of key reef types: live coral, bleached coral, dead coral and macroalgae. Results indicate that spectral variation of benthic types and sub-pixel mixing is the primary limiting factor for benthic mapping objectives, whereas instrument noise levels are a minor factor.
机译:开发了一种通用方法,用于根据环境组件和成像传感器配置来分析水生系统的光学遥感功能。该方法基于整个系统的基于组件的模型,该模型不仅通过底栖成分,而且还通过数据集定义其他环境组件(例如水固有光学特性(IOP),测深,太阳高度,风速和传感器噪声特征)。包含跨图像变化的潜力。该模型被应用于空中传感器环境中来自太平洋珊瑚礁的数据,以估计与主要珊瑚礁类型的底栖混合物(活珊瑚,漂白珊瑚,死珊瑚和大型藻类)的歧视相混淆的主要环境或传感器因素。结果表明,底栖类型和亚像素混合的光谱变化是底栖成像目标的主要限制因素,而仪器噪声水平是次要因素。

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