[1] |
SINGH A.Soil salinization and waterlogging:A threat to environment and agricultural sustainability[J].Ecological Indicators,2015,57:128-130.
|
[2] |
MACHADO R,SERRALHEIRO R.Soil salinity:Effect on vegetable crop growth management practices to prevent and mitigate soil salinization[J].Horticulturae,2017,3(2):30.
|
[3] |
梁静,丁建丽,王敬哲,等.基于反射光谱与Landsat 8 OLI多光谱数据的艾比湖湿地土壤盐分估算[J].土壤学报,2019,56(2):320-330.[LIANG Jing,DING Jianli,WANG Jingzhe,et al.Quantitative estimation and mapping of soil salinity in the Ebinur Lake Wetland based on Vis-NIR reflectance and Landsat 8 OLI data[J].Acta Pedologica Sinica,2019,56(2):320-330.]
|
[4] |
CHEN Y,ZHAO X,JIA X.Spectral-spatial classification of hyperspectral data based on deep belief network[J].IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing,2015,8(6):2381-2392.
|
[5] |
ROSSEL R A V,BEHRENS T,BEN-DOR E,et al.A global spectral library to characterize the world’s soil[J].Earth-Science Reviews,2016,155:198-230.
|
[6] |
王敬哲,丁建丽,马轩凯,等.基于光谱指数的绿洲农田土壤含水率无人机高光谱检测[J].农业机械学报,2018,49(11):1-14.[WANG Jingzhe,DING Jianli,MA Xuankai,et al.Detection of soil moisture content based on UAV-derived hyperspectral imagery and spectral index in oasis cropland[J].Transactions of the Chinese Society for Agricultural Machinery,2018,49(11):1-14.]
|
[7] |
史舟,梁宗正,杨媛媛,等.农业遥感研究现状与展望[J].农业机械学报,2015,46(2):247-260.[SHI Zhou,LIANG Zongzheng,YANG Yuanyuan,et al.Status and prospect of agricultural remote sensing[J].Transactions of the Chinese Society for Agricultural Machinery,2015,46(2):247-260.]
|
[8] |
黄权中,徐旭,吕玲娇,等.基于遥感反演河套灌区土壤盐分分布及对作物生长的影响[J].农业工程学报,2018,34(1):102-109.[HUANG Quanzhong,XU Xu,LYU Lingjiao,et al.Soil salinity distribution based on remote sensing and its effect on crop growth in Hetao Irrigation District[J].Transactions of the Chinese Society of Agricultural Engineering,2018,34(1):102-109.]
|
[9] |
厉彦玲,赵庚星,常春艳,等.OLI 与 HSI 影像融合的土壤盐分反演模型[J].农业工程学报,2017,33(21):173-180.[LI Yanling,ZHAO Gengxing,CHANG Chunyan,et al.Soil salinity retrieval model based on OLI and HSI image fusion[J].Transactions of the Chinese Society of Agricultural Engineering,2017,33(21):173-180.]
|
[10] |
NAWAR S,BUDDENBAUM H,HILL J.Estimation of soil salinity using three quantitative methods based on visible and near-infrared reflectance spectroscopy:A case study from Egypt[J].Arabian Journal of Geosciences,2015,8(7):5127-5140.
|
[11] |
WANG X,ZHANG F,DING J,et al.Estimation of soil salt content (SSC) in the Ebinur Lake Wetland National Nature Reserve (ELWNNR),northwest China,based on a BootstrapBP neural network model and optimal spectral indices[J].Science of the Total Environment,2018,615:918-930.
|
[12] |
王涛,喻彩丽,姚娜,等.MLR和PLSR的沙壤土盐分含量光谱检测对比研究[J].干旱区地理,2018,41(6):1295-1302.[WANG Tao,YU Caili,YAO Na,et al.A comparison of the salt content in sandy soil between the MLR model and PLSR model[J].Arid Land Geography,2018,41(6):1295-1302.]
|
[13] |
姚远,丁建丽,张芳,等.基于高光谱指数和电磁感应技术的区域土壤盐渍化监测模型[J].光谱学与光谱分析,2013,33(6):1658-1664.[YAO Yuan,DING Jianli,ZHANG Fang,et al.Research on model of soil salinization monitoring based on hyperspectral index and EM38[J].Spectroscopy and Spectral Analysis,2013,33(6):1658-1664.]
|
[14] |
张桉赫,丁建丽,董煜,等.新疆艾比湖绿洲干燥指数变化特征[J].干旱区研究,2019,36(1):244-252.[ZHANG Anhe,DING Jianli,DONG Yu,et al.Change of aridity index in the Ebinur Lake Oasis,Xinjiang[J].Arid Zone Research,2019,36(1):244-252.]
|
[15] |
王敬哲,丁建丽,王飞,等.艾比湖湿地不同盐渍化土壤粒度组成及可蚀性研究[J].土壤,2018,50(3):598-605.[WANG Jingzhe,DING Jianli,WANG Fei,et al.Particle size distribution (PSD) and erodibility of soils under different salinization degrees in Ebinur Lake Wetland[J].Soils,2018,50(3):598-605.]
|
[16] |
WANG J,DING J,ABULIMITI A,et al.Quantitative estimation of soil salinity by means of different modeling methods and visible-near infrared (VIS-NIR) spectroscopy,Ebinur Lake Wetland,northwest China[J].PeerJ,2018,6:e4703.
|
[17] |
EL HARTI A,LHISSOU R,CHOKMANI K,et al.Spatiotemporal monitoring of soil salinization in irrigated Tadla Plain (Morocco) using satellite spectral indices[J].International Journal of Applied Earth Observation and Geoinformation,2016,50:64-73.
|
[18] |
李哲,张飞,冯海宽,等.基于波段组合的植被叶片盐离子估算研究[J].光学学报,2017,37(11):325-339.[LI Zhe,ZHANG Fei,FENG Haikuan,et al.Research on the estimation of salt ions of vegetation leaves based on band combination[J].Acta Optica Sinica,2017,37(11):325-339.]
|
[19] |
GALVAO R K H,ARAUJO M C U,JOSE G E,et al.A method for calibration and validation subset partitioning[J].Talanta,2005,67(4):736-740.
|
[20] |
MCGOVERN A,ELMORE K L,GAGNE D J,et al.Using artificial intelligence to improve realtime decision-making for high-impact weather[J].Bulletin of the American Meteorological Society,2017,98(10):2073-2090.
|
[21] |
DZIAK J J,COFFMAN D L,LANZA S T,et al.Sensitivity and specificity of information criteria[J].Briefings in Bioinformatics,2019,20(1):1-13.
|
[22] |
PENG J,BISWAS A,JIANG Q,et al.Estimating soil salinity from remote sensing and terrain data in southern Xinjiang Province,China[J].Geoderma,2019,337:1309-1319.
|
[23] |
NAWAR S,BUDDENBAUM H,HILL J,et al.Modeling and mapping of soil salinity with reflectance spectroscopy and landsat data using two quantitative methods[J].Remote Sensing,2014,6(11):10813-10834.
|
[24] |
DONLON C,BERRUTI B,BUONGIORNO A,et al.The global monitoring for environment and security (GMES) sentinel-3 mission[J].Remote Sensing of Environment,2012,120:37-57.
|
[25] |
DRUSCH M,DEL BELLO U,CARLIER S,et al.Sentinel-2:ESA’s optical high-resolution mission for GMES operational services[J].Remote Sensing of Environment,2012,120:25-36.
|