Estimating soil moisture content using laboratory spectral data

被引:24
作者
Yang, Xiguang [1 ]
Yu, Ying [2 ]
Li, Mingze [2 ]
机构
[1] Northeast Forestry Univ, Key Lab Saline Alkali Vegetat Ecol Restorat SAVER, Minist Educ, ASNESC, 26 Hexing Rd, Harbin 150040, Heilongjiang, Peoples R China
[2] Northeast Forestry Univ, 26 Hexing Rd, Harbin 150040, Heilongjiang, Peoples R China
基金
中国国家自然科学基金;
关键词
Absorption feature; Hyperspectral; Inverted Gaussian function; Remote sensing; PERPENDICULAR DROUGHT INDEX; REFLECTANCE SPECTROSCOPY; HIGH-RESOLUTION; WATER-CONTENT; LANDSAT DATA; IMAGERY; RADAR; TERRAIN; NORTH; SPACE;
D O I
10.1007/s11676-018-0633-6
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Monitoring soil moisture is important for agriculture and forestry and plays an essential role in land surface processes as well as providing feedback among the earth's surface ecosystems. Large-scale regional soil moisture spatial data can be obtained with a reliable and operational approach using remote sensing. In this paper, we provide an operational framework for retrieving soil moisture using laboratory spectral data. The inverted Gaussian function was used to fit soil spectral data, and its feature parameters, including absorption depth (AD) and absorption area (AA), were selected as variables for a soil moisture estimate model. There was a significant correlative relationship between soil moisture and AD, as well as AA near 1400 and 1900nm. A one-variable linear regression model was established to estimate soil moisture. The model was evaluated using the determination coefficients (R-2), root mean square error and average precision. Four models were established and evaluated in this study. The determination coefficients of the four models ranged from 0.794 to 0.845. The average accuracy for soil moisture estimates ranged from 90 to 92%. The results prove that it is feasible to estimate soil moisture using remote sensing technology.
引用
收藏
页码:1073 / 1080
页数:8
相关论文
共 39 条
[1]   Correlation between ground measured soil moisture and RADARSAT-1 derived backscattering coefficient over an agricultural catchment of Navarre (North of Spain) [J].
Alvarez-Mozos, J ;
Casalí, J ;
González-Audícana, M ;
Verhoest, NEC .
BIOSYSTEMS ENGINEERING, 2005, 92 (01) :119-133
[2]   Two new soil moisture indices based on the NIR-red triangle space of Landsat-8 data [J].
Amani, Meisam ;
Parsian, Saeid ;
MirMazloumi, S. Mohammad ;
Aieneh, Omid .
INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND GEOINFORMATION, 2016, 50 :176-186
[3]  
Carlson T.N., 1994, Remote Sens. Rev, V9, P161, DOI DOI 10.1080/02757259409532220
[4]   AN INTERPRETATION OF METHODOLOGIES FOR INDIRECT MEASUREMENT OF SOIL-WATER CONTENT [J].
CARLSON, TN ;
GILLIES, RR ;
SCHMUGGE, TJ .
AGRICULTURAL AND FOREST METEOROLOGY, 1995, 77 (3-4) :191-205
[5]   A NEW LOOK AT THE SIMPLIFIED METHOD FOR REMOTE-SENSING OF DAILY EVAPOTRANSPIRATION [J].
CARLSON, TN ;
CAPEHART, WJ ;
GILLIES, RR .
REMOTE SENSING OF ENVIRONMENT, 1995, 54 (02) :161-167
[6]   Spaceborne soil moisture estimation at high resolution: a microwave-optical/IR synergistic approach [J].
Chauhan, NS ;
Miller, S ;
Ardanuy, P .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 2003, 24 (22) :4599-4622
[7]   REFLECTANCE SPECTROSCOPY - QUANTITATIVE-ANALYSIS TECHNIQUES FOR REMOTE-SENSING APPLICATIONS [J].
CLARK, RN ;
ROUSH, TL .
JOURNAL OF GEOPHYSICAL RESEARCH, 1984, 89 (NB7) :6329-6340
[8]   Global Calibration of the GEOS-5 L-Band Microwave Radiative Transfer Model over Nonfrozen Land Using SMOS Observations [J].
De Lannoy, Gabrielle J. M. ;
Reichle, Rolf H. ;
Pauwels, Valentijn R. N. .
JOURNAL OF HYDROMETEOROLOGY, 2013, 14 (03) :765-785
[9]   MODELING RELATIONSHIPS BETWEEN NDVI AND PRECIPITATION DURING VEGETATIVE GROWTH CYCLES [J].
DI, LP ;
RUNDQUIST, DC ;
HAN, LH .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1994, 15 (10) :2121-2136
[10]   REFLECTANCE SPECTRA OF EVAPORITE MINERALS (400-2500-NM) - APPLICATIONS FOR REMOTE-SENSING [J].
DRAKE, NA .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1995, 16 (14) :2555-2571