首页> 外文会议>GNSS and Integrated Geospatial Applications: Geoinformatics 2006; Proceedings of SPIE-The International Society for Optical Engineering; vol.6418 >Water quality monitoring model construction by integration of multi-source data: a case study in Whangpoo River upper region
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Water quality monitoring model construction by integration of multi-source data: a case study in Whangpoo River upper region

机译:集成多源数据的水质监测模型构建-以黄浦江上游地区为例

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The method by the integration of multi-source data including remote sensing data , ground spectral measurement data and other in situ monitoring data , is presented in this paper to construct a quantitative water quality inversion model. The upper region of Whangpoo River in Shanghai is selected as a study area and the dissolved oxygen is chose as a typical water quality indicator. We first process the remote sensing imagery and field spectrometer data to obtain the accurate water reflectance. An inversion model of dissolved oxygen is then derived from the modeling analysis between the water quality data and the reflectance. The accuracy of the model is further confirmed, and this model is applied to invert the dissolved oxygen distribution in Whangpoo River upper region. The inverted water quality distribution has a high consistency with the practical case. This proves that the method by integration of multi-source data is an effective way to monitor the water quality.
机译:提出了一种融合遥感数据,地谱测量数据和其他原位监测数据的多源数据的方法,以建立定量的水质反演模型。以上海黄浦江上游地区为研究区域,以溶解氧为典型水质指标。我们首先处理遥感图像和现场光谱仪数据,以获得准确的水反射率。然后从水质数据和反射率之间的建模分析中得出溶解氧的反演模型。该模型的准确性得到进一步证实,并将该模型用于逆转黄浦江上游地区的溶解氧分布。倒置的水质分布与实际情况具有高度一致性。这证明通过综合多源数据的方法是监测水质的有效方法。

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