PDF DownloadHTML ]" id="html" rel="external">HTML
[1]TIAN Anhong,FU Chengbiao,XIONG Heigang,et al.Hyperspectral Estimation of Na+ Ion in Saline Soils in Areas With Different Human Activities Using BPNN Model[J].Research of Soil and Water Conservation,2020,27(02):364-369.
Copy

Hyperspectral Estimation of Na+ Ion in Saline Soils in Areas With Different Human Activities Using BPNN Model

References:
[1] 阿布都热合曼·哈力克.新疆岳普湖县土壤盐分空间变异及其分布特征研究[J].水土保持研究,2011,18(1):97-100.
[2] 王飞,杨胜天,丁建丽,等.环境敏感变量优选及机器学习算法预测绿洲土壤盐分[J].农业工程学报,2018,34(22):102-110.
[3] Wichelns D, Qadir M. Achieving sustainable irrigation requires effective management of salts, soil salinity, and shallow groundwater[J]. Agricultural Water Management, 2015,157:31-38.
[4] 林鹏达,佟志军,张继权,等.基于CWT的黑土有机质含量野外高光谱反演模型[J].水土保持研究,2018,25(2):46-52,57.
[5] 王明宽,莫宏伟,陈红艳.基于近地高光谱的土壤氯离子含量估测[J].水土保持通报,2017,37(6):214-219.
[6] 郑雯,明金,杨孟克,等.基于波段深度分析和BP神经网络的水稻色素含量高光谱估算[J].中国生态农业学报,2017,25(8):1224-1235.
[7] 龚巧灵,官冬杰.基于BP神经网络的三峡库区重庆段水资源安全评价[J].水土保持研究,2017,24(6):292-299.
[8] 刁万英,刘刚,胡克林.基于高光谱特征与人工神经网络模型对土壤含水量估算[J].光谱学与光谱分析,2017,37(3):841-846.
[9] 卢志宏,刘辛瑶,常书娟,等.基于BP神经网络的草原矿区表层土壤N/P高光谱反演模型[J].草业科学,2018,35(9):2127-2136.
[10] 郭云开,刘宁,刘磊,等.土壤Cu含量高光谱反演的BP神经网络模型[J].测绘科学,2018,43(1):135-139,152.
[11] 段鹏程,熊黑钢,李荣荣,等.不同干扰程度的盐渍土与其光谱反射特征定量分析[J].光谱学与光谱分析,2017,37(2):571-576.
[12] 乔娟峰,熊黑钢,王小平,等.基于最优模型的荒地土壤有机质含量空间反演[J].江苏农业学报,2018,34(1):68-75.
[13] Kuang B, Mouazen A M. Effect of spiking strategy and ratio on calibration of on-line visible and near infrared soil sensor for measurement in European farms[J]. Soil & Tillage Research, 2013,128:125-136.
Similar References:

Memo

-

Last Update: 2020-02-25

Online:484       Total Traffic Statistics:23885326

Website Copyright: Research of Soil and Water Conservation Shaanxi ICP No.11014090-10
Tel: 029-87012705 Address: Editorial Department of Research of Soil and Water Conservation, No. 26, Xinong Road, Yangling, Shaanxi Postcode: 712100