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首页> 外文期刊>Journal for nature conservation >Detecting vegetation changes in a wetland area in Northern Germany using earth observation and geodata
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Detecting vegetation changes in a wetland area in Northern Germany using earth observation and geodata

机译:利用地球观测和地理数据检测德国北部湿地地区的植被变化

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摘要

Monitoring land use and landscape dynamics in conservation areas is important to understand and influence nature and restoration processes. Earth observation data can help to detect changes automatically in extensive areas. In a wetland area in Northern Germany different change detection methods have been tested to detect wetland restoration processes, especially succession of wetland and moorland vegetation over 11 years. Therefore a change detection method based on a selective principal component analysis followed by a fuzzy membership function introduced by Weiers et al. (2001). was tested with dual date Landsat TM/ETM+ images. As comparison vegetation maps and Colour-infrared (CIR)-aerial photographs were analysed. The main objectives were to find out (1) if changes, especially vegetation changes, can be detected on the study area by the method as described by Weiers et al. (2001), (2) which changes can be detected and (3) which is the best method on the study area, respectively: the Landsat change detection method, the analysis of vegetation maps or the interpretation of CIR-aerial photographs. For detecting vegetation changes the most detailed information were achieved by interpreting CiR-aerial photographs, while the Landsat change detection method turned out to be more suitable for detecting changes of wetness.
机译:监测保护区的土地利用和景观动态对于理解和影响自然与恢复过程很重要。地球观测数据可以帮助自动检测大范围的变化。在德国北部的湿地地区,已经测试了不同的变化检测方法来检测湿地恢复过程,尤其是11年以上的湿地和沼泽地植被的演替。因此,一种基于选择性主成分分析的变化检测方法,然后是Weiers等人提出的模糊隶属函数。 (2001)。已使用双日期Landsat TM / ETM +图像进行了测试。作为比较,分析了植被图和彩色红外(CIR)-航空照片。主要目的是找出(1)是否可以通过Weiers等人的方法在研究区域检测到变化,尤其是植被变化。 (2001),(2)可以检测到变化,而(3)是研究区域上的最佳方法,分别是:Landsat变化检测方法,植被图分析或CIR航空照片的解释。为了检测植被变化,最详尽的信息是通过解释CiR航空照片获得的,而Landsat变化检测方法被证明更适合于检测湿度的变化。

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