Nan Wang

Orcid: 0000-0003-3891-7597

Affiliations:
  • Zhejiang University, Institute of Agricultural Remote Sensing and Information Technology Application, Hangzhou, China


According to our database1, Nan Wang authored at least 12 papers between 2020 and 2024.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

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PhD thesis 
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Bibliography

2024
Estimation of Soil Salinity by Combining Spectral and Texture Information from UAV Multispectral Images in the Tarim River Basin, China.
Remote. Sens., October, 2024

2023
Fine Resolution Mapping of Soil Organic Carbon in Croplands with Feature Selection and Machine Learning in Northeast Plain China.
Remote. Sens., October, 2023

2022
Global Soil Salinity Prediction by Open Soil Vis-NIR Spectral Library.
Remote. Sens., 2022

Digital Mapping of Soil Organic Carbon with Machine Learning in Dryland of Northeast and North Plain China.
Remote. Sens., 2022

A New Framework for Reconstructing Time Series DMSP-OLS Nighttime Light Data Using the Improved Stepwise Calibration (ISC) Method.
Remote. Sens., 2022

Extraction of Agricultural Fields via DASFNet with Dual Attention Mechanism and Multi-scale Feature Fusion in South Xinjiang, China.
Remote. Sens., 2022

2021
Dynamics of Vegetation Greenness and Its Response to Climate Change in Xinjiang over the Past Two Decades.
Remote. Sens., 2021

Correction: Lin, Y., et al. Road Extraction from Very-High-Resolution Remote Sensing Images via a Nested SE-Deeplab Model. Remote Sens. 12, 2020. 2985.
Remote. Sens., 2021

2020
Fine-Resolution Mapping of Soil Total Nitrogen across China Based on Weighted Model Averaging.
Remote. Sens., 2020

Integrating Remote Sensing and Landscape Characteristics to Estimate Soil Salinity Using Machine Learning Methods: A Case Study from Southern Xinjiang, China.
Remote. Sens., 2020

Road Extraction from Very-High-Resolution Remote Sensing Images via a Nested SE-Deeplab Model.
Remote. Sens., 2020

Field-Scale Characterization of Spatio-Temporal Variability of Soil Salinity in Three Dimensions.
Remote. Sens., 2020


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