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Decorrelating remote sensing color bands from bathymetry in optically shallow waters

机译:从光学浅水中的测深中解相关遥感色带

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We have developed a simple technique to decorrelate remote sensing color band data from depth in optically shallow water. The method linearizes color band data with respect to depth by subtracting an optically deepwater value from the entire waveband under consideration and taking the natural logarithm of the result. Next, this linearized waveband is rotated about the model 2 regression line computed against a bathymetry band. The rotated color band is decorrelated from water depth. We demonstrate the technique for a small area of Kailua Bay, Oahu, HI, using Quickbird multispectral and Scanning Hydrographic Operational Airborne Lidar Survey LIDAR data. Results indicate that color band data are effectively decorrelated from depth, while bottom reflector variability is maintained, thus providing the basis for further analysis of the depth-invariant wavebands. The primary benefit of our technique is that wavebands are rotated independently, preserving relative spectral information.
机译:我们已经开发了一种简单的技术,可以从光学浅水中的深度对遥感色带数据进行解相关。该方法通过从所考虑的整个波段中减去光学上的深水值并取结果的自然对数,相对于深度线性化色带数据。接下来,使该线性化波段围绕针对测深波段计算的模型2回归线旋转。旋转的色带与水深成反相关。我们使用Quickbird多光谱和扫描水文运行机载激光雷达测量LIDAR数据,对夏威夷瓦胡岛凯鲁瓦湾的一小部分进行了演示。结果表明,色带数据与深度有效地解相关,同时保持了底部反射器的可变性,从而为进一步分析深度不变的波段提供了基础。我们技术的主要好处是波段独立旋转,从而保留了相对光谱信息。

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