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Mapping seasonal impervious surface dynamics in Wuhan urban agglomeration, China from 2000 to 2016

机译:从2000年到2016年,在武汉城市集镇中映射季节性不透水表面动态

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Numerous methods have been successfully applied to estimate the regional impervious surface dynamics based on spectral or spatial information from remote sensing imagery. However, previous methods mainly focused on mapping impervious surfaces at annual or decadal time scales. Few studies have attempted to map impervious surface dynamics at finer time scales, such as on a seasonal time scale using temporal information. This study aims to map regional impervious surface dynamics on a seasonal time scale by using time series Landsat data. The semi-supervised support vector machine (SVM) algorithm was employed for classifying impervious surfaces based on temporal characteristics, which were derived from seasonal time series biophysical composition index (BCI) and seasonal time series modified normalized difference impervious surface index (NDISI). The proposed method was validated over the Wuhan urban agglomeration (WUA) in China from 2000 to 2016. The results showed that impervious surfaces in the Wuhan urban agglomeration increased from 903.24 km(2) in 2000 to 3989.49 km(2) in 2016, with an annual growth rate of 20.10%. Additionally, the proposed method yielded reasonable average overall classification accuracy (up to 88%). Our results demonstrated that the proposed method could accurately map seasonal impervious surface dynamics based on temporal characteristics. This study could enable the monitoring of time-intensive impervious surfaces at a regional scale using remote sensing data.
机译:已经成功地应用了许多方法以基于来自遥感图像的光谱或空间信息来估计区域不透水表面动态。然而,以前的方法主要集中在年度或截止时间尺度或截止时间尺度的绘制不透水的表面。很少有研究已经尝试在更精细的时间尺度下映射不透水的表面动态,例如使用时间信息在季节性时间尺度上。本研究旨在通过使用时间序列Landsat数据将区域不透水表面动力学映射。基于季节性时间序列生物物理成分指数(BCI)和季节性时间序列改性归一化差异不透水表面指数(NDISI)衍生自季节性时间序列生物物理成分指数(BCI)和季节性时间序列的季节性特征,用于对季节性特征进行分类的不透水表面。从2000年至2016年的中国武汉城市集聚(WuA)验证了该方法。结果表明,武汉城市集聚的不受欢迎从2000年的903.24公里增加到2016年(2)(2)年增长率为20.10%。此外,该方法还产生合理的平均整体分类精度(高达88%)。我们的结果表明,该方法可以基于时间特征准确地映射季节性不透水表面动力学。该研究可以使用遥感数据在区域尺度下监测时间强化不透水表面。

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