[1] GERSMAN R,BEN-DOR E,BEYTH M,et al.Mapping of hydrothermally altered rocks by the EO-1 Hyperion sensor,Northern Danakil Depression,Eritrea[J].International Journal of Remote Sensing,2008,29(13):3911-3936. [2] 叶发旺,刘德长,赵英俊.CASI/SASI航空高光谱遥感测量系统及其在铀矿勘查中的初步应用[J].世界核地质科学,2011,28(4):231-236. [3] 孙雨,赵英俊,李瀚波,等.青海省都兰县阿斯哈金矿区HySpex高光谱矿物填图及其找矿意义[J].地质学报,2015,89(1):195-203. [4] YU S,JIANG T N,FENG T,et al.Alteration mineral mapping of the Xiangshan uranium core using HySpex imaging hyperspectral data and its geological significance[J].Geology and Exploration,2015,51(1):165-74. [5] BEDINI E.Mineral mapping in the Kap Simpson complex,central East Greenland,using HyMap and ASTER remote sensing data[J].Advances in Space Research,2011,47(1):60-73. [6] OKYAY U,KHAN S D.Remote detection of fluid-related diagenetic mineralogical variations in the Wingate Sandstone at different spatial and spectral resolutions[J].International Journal of Applied Earth Observation and Geoinformation,2016,44:70-87. [7] CHEN Qi,ZHAO Zhifang,ZHOU Jiaxi,et al.ASTER and GF-5 satellite data for mapping hydrothermal alteration minerals in the longtoushan Pb-Zn deposit,SW China[J].Remote Sensing,2022,14(5):1253. [8] 董新丰,甘甫平,李娜,等.高分五号高光谱影像矿物精细识别[J].遥感学报,2020,24(4):454-464. [9] 邓素贞,贺佳惠,王永军.ETM数据在金矿化蚀变信息提取中的应用研究:以张家口下双台地区为例[J].国土资源遥感,2010,22(4):56-59. [10] 张廷斌,唐菊兴,黄丁发.矿化蚀变信息提取的TM/ETM+遥感影像模式[J].遥感信息,2009,24(2):47-51. [11] ROWAN L C,MARS J C.Lithologic mapping in the Mountain Pass,California area using advanced spaceborne thermal emission and reflection radiometer (ASTER)data[J].Remote Sensing of Environment,2003,84(3):350-366. [12] 吕凤军,郝跃生,石静,等.ASTER遥感数据蚀变遥感异常提取研究[J].地球学报,2009,30(2):271-276. [13] 崔振营,毛先成,杨春华,等.Landsat-8数据的矿化蚀变信息提取及找矿预测[J].测绘科学技术,2019(4):171-178. [14] 李浩杰,常晓珂.基于Landsat-8 OLI数据的遥感蚀变信息提取与分析:以金塔大红山地区为例[J].甘肃科技,2015,31(13):16-19. [15] 范斌,陈旭,李碧岑,等.“高分五号”卫星光学遥感载荷的技术创新[J].红外与激光工程,2017,46(1):0102002. [16] 葛良胜,邓军,邹依林,等.西藏冈底斯地块北缘甲岗雪山钨-钼-铋-铜-金多金属矿床地质特征及成因初步研究[J].矿产与地质,2005,19(3):253-259. [17] 田怡红,曾令森,高利娥,等.藏南特提斯喜马拉雅晚二叠世酸性岩浆作用及其构造意义[J].岩石学报,2021,37(10):3035-3047. [18] 王瑞,朱弟成,王青,等.特提斯造山带斑岩成矿作用[J].中国科学:地球科学,2020,50(12):1919-1946. [19] COOLEY T,ANDERSON G P,FELDE G W,et al.FLAASH,a MODTRAN4-based atmospheric correction algorithm,its application and validation[C]//Proceedings of 2002 IEEE International Geoscience and Remote Sensing Symposium.Toronto:IEEE,2002:1414-1418. [20] BOARDMAN J W,KRUSE F A.Analysis of imaging spectrometer data using N-dimensional geometry and a mixture-tuned matched filtering approach[J].IEEE Transactions on Geoscience and Remote Sensing,2011,49(11):4138-4152. [21] PARKER WILLIAMS A,HUNT E R.Estimation of leafy spurge cover from hyperspectral imagery using mixture tuned matched filtering[J].Remote Sensing of Environment,2002,82(2/3):446-456. [22] KRAUT S,SCHARF L L,BUTLER R W.The adaptive coherence estimator:a uniformly most-powerful-invariant adaptive detection statistic[J].IEEE Transactions on Signal Processing,2005,53(2):427-438. [23] DU Qian,REN H,CHANG C I.A comparative study for orthogonal subspace projection and constrained energy minimization[J].IEEE Transactions on Geoscience and Remote Sensing,2003,41(6):1525-1529. [24] REN H,CHANG C I.A target-constrained interference-minimized filter for subpixel target detection in hyperspectral imagery[C]//Proceedings of 2000 IEEE International Geoscience and Remote Sensing Symposium.Honolulu:IEEE,2002:1545-1547. [25] KRUSE F A,LEFKOFF A B,BOARDMAN J W,et al.The spectral image processing system (SIPS):interactive visualization and analysis of imaging spectrometer data[J].Remote Sensing of Environment,1993,44(2/3):145-163. [26] CROSTA A P,MOORE J.Enhancement of Landsat thematic mapper imagery for residual soil mapping in SW Minais Gerais State,Brazil:a prospecting case history in greenstone belt terrain[C]//Proceedings of the 7th (ERIM)Thematic Conference:Remote Sensing for Exploration Geology.Zhoushan:IEEE,1989:1173-1187. |