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首页> 外文期刊>International journal of remote sensing >A comparison of Multi-layer Perceptron and multilinear regression algorithms for the inversion of synthetic ocean colour spectra
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A comparison of Multi-layer Perceptron and multilinear regression algorithms for the inversion of synthetic ocean colour spectra

机译:多层感知器与多元线性回归算法在合成海洋色谱反演中的比较

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Artificial radiance sets were used as inputs to Multi-layer Perceptron and multilinear regression algorithms to study their retrieval capabilities for optically active constituents in sea water. The radiative transfer model Hydrolight was used to produce 18,000 artificial reflectance spectra representing various case 1 and case 2 water conditions. The remote sensing reflectances were generated at the Medium Resolution Imaging Spectrometer (MERIS) wavebands 412, 442, 490, 510, 560, 620, 665 and 682nm from randomly generated triplet combinations of chlorophyll a, non-chlorophyllous particles and CDOM (Coloured Dissolved Organic Matter) concentrations. These reflectances were contaminated with different noise terms, before they were used to assess the performance of multilayer perceptron and multilinear regression algorithms. The potential of both algorithms for retrieving optically active constituents was demonstrated with the neural network showing more accurate results for case 2 scenarios.
机译:人工辐射集被用作多层感知器和多线性回归算法的输入,以研究其对海水中光学活性成分的检索能力。辐射传递模型Hydrolight用于产生代表各种情况1和情况2的水状况的18,000个人工反射光谱。遥感反射率是在中分辨率成像光谱仪(MERIS)波段412、442、490、510、560、620、665和682nm处从叶绿素a,非叶绿素颗粒和CDOM(Coloured Dissolved Organic物质)浓度。在将这些反射率用于评估多层感知器和多线性回归算法的性能之前,这些反射率受到不同噪声项的污染。神经网络展示了案例2场景中更准确的结果,这两种算法都具有检索光学活性成分的潜力。

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