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A Novel Cloud Removal Method Based on IHOT and the Cloud Trajectories for Landsat Imagery
Chen, SL (Chen, Shuli)1,2; Chen, XH (Chen, Xuehong)1,2; Chen, X (Chen, Xiang)3; Chen, J (Chen, Jin)1,2; Cao, X (Cao, Xin)1,2; Shen, ME (Shen, Miaogen)4; Yang, W (Yang, Wei)5; Cui, XH (Cui, Xihong)1,2
Source PublicationREMOTE SENSING
2018-07-01
Volume10Issue:7Pages:文献号 1040
DOI10.3390/rs10071040
AbstractCloud removal is a prerequisite for the application of Landsat datasets, as such satellite images are invariably contaminated by clouds. Clouds affect the transmission of radiation signal to different degrees because of their different thicknesses, shapes, heights and distributions. Existing methods utilize pixel replacement to remove thick clouds and pixel correction techniques to rectify thin clouds in order to retain the land surface information in contaminated pixels. However, a major limitation of these methods refers to their deficiency in retrieving land surface reflectance when both thick clouds and thin clouds exist in the images, as the two types of clouds differ in the transmission of radiation signal. As most remotely sensed images show rather complex cloud contamination patterns, an efficient method to alleviate both thin and thick cloud effects is in need of development. To this end, the paper proposes a new method to rectify cloud contamination based on the cloud detection of iterative haze-optimized transformation (IHOT) and the cloud removal of cloud trajectory (IHOT-Trajectory). The cloud trajectory is able to take consideration of signal transmission for different levels of cloud contamination, which characterizes the spectral response of a certain type of land cover under increasing cloud thickness. Specifically, this method consists in four steps. First, the cloud thicknesses of contaminated pixels are estimated by the IHOT. Second, areas affected by cloud shadows are marked. Third, cloud trajectories are fitted with the aid of neighboring similar pixels under different cloud thickness. Last, contaminated areas are rectified according to the relationship between the land surface reflectance and the IHOT. The experimental results indicate that the proposed approach is able to effectively remove both the thin and thick clouds and erase the cloud shadows of Landsat images under different scenarios. In addition, the proposed method was compared with the dark object subtraction (DOS), the modified neighborhood similar pixel interpolator (MNSPI) and the multitemporal dictionary learning (MDL) methods. Quantitative assessments show that the IHOT-Trajectory method is superior to the other cloud removal methods overall. For specific spectral bands, the proposed method performs better than other methods in visible bands, whereas it does not necessarily perform better in infrared bands.
WOS IDWOS:000440332500063
Language英语
Indexed BySCIE
KeywordHAZE-OPTIMIZED TRANSFORMATION SATELLITE IMAGERY COVER ASSESSMENT SHADOW
WOS Research AreaRemote Sensing
WOS SubjectRemote Sensing
Cooperation Status国际
ISSN2072-4292
Department高寒生态重点实验室
PublisherMDPI
Citation statistics
Document Type期刊论文
Identifierhttp://ir.itpcas.ac.cn/handle/131C11/8605
Collection图书馆
Affiliation1.Beijing Normal Univ, Fac Geog Sci, State Key Lab Earth Surface Proc & Resource Ecol, Beijing 100875, Peoples R China;
2.Beijing Normal Univ, Inst Remote Sensing Sci & Engn, Fac Geog Sci, Beijing Engn Res Ctr Global Land Remote Sensing P, Beijing 100875, Peoples R China;
3.Arkansas Tech Univ, Dept Emergency Management, Russellville, AR 72801 USA;
4.Chinese Acad Sci, Inst Tibetan Plateau Res, Key Lab Alpine Ecol & Biodivers, 16 Lincui Rd, Beijing 100101, Peoples R China;
5.Chiba Univ, Ctr Environm Remote Sensing, Chiba 2638522, Japan.
Recommended Citation
GB/T 7714
Chen, SL ,Chen, XH ,Chen, X ,et al. A Novel Cloud Removal Method Based on IHOT and the Cloud Trajectories for Landsat Imagery[J]. REMOTE SENSING,2018,10(7):文献号 1040.
APA Chen, SL .,Chen, XH .,Chen, X .,Chen, J .,Cao, X .,...&Cui, XH .(2018).A Novel Cloud Removal Method Based on IHOT and the Cloud Trajectories for Landsat Imagery.REMOTE SENSING,10(7),文献号 1040.
MLA Chen, SL ,et al."A Novel Cloud Removal Method Based on IHOT and the Cloud Trajectories for Landsat Imagery".REMOTE SENSING 10.7(2018):文献号 1040.
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