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Image Analysis for Altimetry Waveform Selection Over Heterogeneous Inland Waters

机译:内陆非均质海域高程波形选择的图像分析

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Over inland waters the altimetry radar return is typically contaminated by both land and surrounding vegetation. Moreover, the radar returns corresponding to floodplain vegetation and exposed mud flats can have similar waveform shapes to those reflected from open water surfaces so that the derived water surface elevations are either inaccurate or difficult to extract. This letter presents a robust and automated method based on image analysis of satellite imagery for the selection of altimetry waveforms over inundated zones. The altimetry footprint is assessed as being inundated if the radiometric response of an image kernel within the footprint conforms to known remotely sensed responses for water. The method was applied in the lower middle Fly floodplain of the Fly River in the Western Province of Papua New Guinea (PNG). Altimetry waveforms were assessed for inundation extent and vegetation cover, with those that met threshold levels being flagged for further retracking and water surface elevation monitoring. The results show that the method accurately identified> 90% of inundated sites along altimeter ground tracks and correctly selected waveforms reflected from water surfaces.
机译:在内陆水域,测高雷达的返回通常受到陆地和周围植被的污染。此外,与漫滩平原植被和裸露的泥滩相对应的雷达回波具有与开放水面反射的波形相似的波形形状,因此得出的水面高程要么不准确,要么难以提取。这封信提出了一种基于卫星图像图像分析的健壮且自动化的方法,用于在淹没区域上选择测高仪波形。如果足迹内图像核的辐射响应符合已知的遥感水响应,则将高度足迹足迹评估为淹没。该方法已在巴布亚新几内亚西部省(PNG)的弗莱河中下游弗莱格平原上应用。评估了高程波形的淹没程度和植被覆盖度,并标记了达到阈值水平的波形,以供进一步追踪和监测水面海拔。结果表明,该方法可以准确地识别出沿高度计地面航迹的> 90%的淹没地点,并正确选择了从水面反射的波形。

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