[1] LI Y, NIE D, ZHAO X, et al. Market Structure and Performance:An Empirical Study of the Chinese Solar Cell Industry[J]. Renewable and Sustainable Energy Reviews, 2017(70):78-82. [2] 张乾,辛晓洲,张海龙,等.基于遥感数据和多因子评价的中国地区建设光伏电站的适宜性分析[J]. 地球信息科学学报, 2018, 20(1):119-127. [3] 王胜利,张连蓬,李行,等.面向特定目标地物提取的改进最佳波段组合方法研究[J]. 测绘通报, 2017(7):49-54. [4] 杜培军,夏俊士,薛朝辉,等.高光谱遥感影像分类研究进展[J]. 遥感学报, 2016, 20(2):236-256. [5] SAMAT A, PERSELLO C, GAMBA P, et al. Supervised and Semi-supervised Multi-view Canonical Correlation Analysis Ensemble for Heterogeneous Domain Adaptation in Remote Sensing Image Classification[J]. Remote Sensing, 2017, 9(12):337. [6] SALGADO C, ZORTEA M, SCHARCANSKI J. Classify-normalize-classify[J]. Earth Science Informatics, 2017:1-21.DOI:10.1007/s12145-017-0318-2. [7] ZHU L, XIAO P, FENG X, et al. Support Vector Machine-based Decision Tree for Snow Cover Extraction in Mountain Areas Using High Spatial Resolution Remote Sensing Image[J]. Journal of Applied Remote Sensing, 2014, 8(1):396-403. [8] SHEN H, HUANG L, ZHANG L, et al. Long-term and Fine-scale Satellite Monitoring of the Urban Heat Island Effect by the Fusion of Multi-temporal and Multi-sensor Remote Sensed Data:A 26-year Case Study of the City of Wuhan in China[J]. Remote Sensing of Environment, 2016(172):109-125. [9] 巫兆聪,胡忠文,张谦,等.结合光谱、纹理与形状结构信息的遥感影像分割方法[J]. 测绘学报, 2013, 42(1):44-50. [10] HUANG X, ZHANG L. An SVM Ensemble Approach Combining Spectral, Structural, and Semantic Features for the Classification of High-resolution Remotely Sensed Imagery[J]. IEEE Transactions on Geoscience and Remote Sensing, 2013, 51(1):257-272. [11] ZHANG L, ZHANG L, TAO D, et al. On Combining Multiple Features for Hyperspectral Remote Sensing Image Classification[J]. IEEE Transactions on Geosci-ence and Remote Sensing, 2012, 50(3):879-893. [12] LI Z, SHEN H, LI H, et al. Multi-feature Combined Cloud and Cloud Shadow Detection in GaoFen-1 Wide Field of View Imagery[J]. Remote Sensing of Environment, 2017(191):342-358. [13] 陈伟,余旭初,张立福,等.采用非正定OCSVM的高光谱影像地物检测[J]. 遥感学报, 2012,16(6):1157-1172. [14] 李厚强,刘政凯,林峰.基于分形理论的航空图像分类方法[J]. 遥感学报, 2001, 5(5):353-357. [15] 佃袁勇,杨光,方圣辉.傅里叶谱纹理和光谱信息结合的高分辨率遥感影像地表覆盖分类[J]. 武汉大学学报(信息科学版), 2017,42(3):362-368. [16] 吕凤华,舒宁,龚龑,等.利用多特征进行航空影像建筑物提取[J]. 武汉大学学报(信息科学版), 2017,43(5):656-660. [17] 岑奕,张艮中,张立福,等.地物光谱不确定性及光谱角制图算法适用性研究[J]. 光谱学与光谱分析, 2015,35(10):2841-2845. [18] 王焕萍,刘勇.基于窗口傅里叶变换功率谱分析的盐田地区高分辨率遥感影像分割分类方法探讨[J]. 遥感技术与应用, 2011, 26(2):233-238. [19] FAUVEL M, BENEDIKTSSON J A, CHANUSSOT J, et al. Spectral and Spatial Classification of Hyperspectral Data Using SVMs and Morphological Profiles[J]. IEEE Transactions on Geoscience and Remote Sensing, 2008, 46(11):3804-3814. [20] 于浩,刘志红,张晓萍,等.基于傅里叶变换的梯田纹理特征提取[J]. 国土资源遥感, 2008,20(2):39-42. [21] 王珂,肖鹏峰,冯学智,等.基于频域滤波的高分辨率遥感图像城市河道信息提取[J]. 遥感学报, 2013, 17(2):269-285. [22] CHUN Y D, KIM N C, JANG I H. Content-based Image Retrieval Using Multiresolution Color and Texture Features[J]. IEEE Transactions on Multimedia, 2008, 10(6):1073-1084. [23] 周烽,封举富,石青云.一种新的基于局部傅里叶级数的纹理描述子[J]. 中国图象图形学报, 2001, 6(10):51-55. [24] 张志龙,李吉成,沈振康.局部傅里叶变换系数各阶矩的纹理鉴别性能分析[J]. 中国图象图形学报, 2006, 11(1):33-40. |