Study on Shadow Detection of World View-II Remote Sensing Image Based on Band Standardization

Junwei Xin Junwei Xin, Xiaoyong Chen Junwei Xin, Zixin Liu Xiaoyong Chen, Yan Luo Zixin Liu, Zhenxing Liu Yan Luo
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Abstract

This paper presents a valid shadow detection method subjected to WorldView-II remote images combining band standardization with principal component transformation algorithm. Eight bands among The WorldView-II image, each band indicates a specified range of values. Firstly, each band is standardized to the same scale, then utilizing three optimal bands forms a new single band. According to the characteristics of principal component, if the gray value of dark material is positive, just take it for granted, which will be used in next operation. Once the gray value is negative, it will be inverted comparing with the former. In this study, selecting the above adaption builds up an advanced shadow index. Experimental results show that the shadow index can distinguish the shadow from other objects effectively, such as water in high brightness, vegetation, roads, buildings. Meanwhile, there is no significant difference between the water in low brightness and high when using the shadow index. To cope with this problem, we propose an advanced water index based on the normalized differential water index, which is constructed to eliminate the interference of water in low brightness. Results indicate that the indexes can accurately distinguish shadow regions in the WorldView-II image data.  
基于波段标准化的World View-II遥感图像阴影检测研究
本文提出了一种结合波段标准化和主成分变换算法的有效的WorldView-II遥感图像阴影检测方法。在WorldView-II图像中有8个波段,每个波段表示一个指定的值范围。首先,将每个波段标准化到相同的尺度,然后利用三个最优波段组成一个新的单一波段。根据主成分的特点,如果暗料的灰度值为正,则视为理所当然,将在下一步操作中使用。一旦灰度值为负,则与前者相比会发生倒转。在本研究中,选择上述自适应建立了一个先进的阴影指数。实验结果表明,阴影指数可以有效地区分高亮度水体、植被、道路、建筑物等物体的阴影。同时,在使用阴影指数时,低亮度和高亮度的水之间没有显著差异。为了解决这一问题,我们提出了一种基于归一化差分水指数的高级水指数,该指数是为了消除低亮度水的干扰而构造的。结果表明,这些指标能够准确区分WorldView-II图像数据中的阴影区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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