返回
Soil profile analysis using interactive visualizations, machine learning, and deep learning
DOI:10.1016/j.compag.2021.106539.png)
摘要
En 中文
Soil is an essential element of life, and soil properties are crucial in analyzing soil health. Recent developments of proximal sensor technologies, such as portable X-ray fluorescence (pXRF) spectroscopy or visible and near-infrared (Vis-NIR) spectroscopy, offer rapid and non-destructive alternatives for quantifying data from soil profiles. While the data collection time using these technologies decreases significantly, the subsequent analysis remains time-consuming, and current analysis solutions only provide basic visualizations. Furthermore, the use of collected data from proximal sensors to predict high-level soil properties has garnered worldwide attention in the past decade, owing to its convenience. Therefore, this paper discusses the objectives for software solutions in this area, consolidated from interviewing 102 stakeholders. Following these requirements, data visualizers work closely with soil scientists to propose a set of interactive visualizations for analyzing soil profiles using pXRF data. These interactive visualizations receive positive feedback from the domain experts. This project also explores various machine learning and deep learning approaches to predict soil properties from spectral data. This work then proposes a deep learning model called RDNet that achieves state-of-the-art results in predicting pH(H2O) and pH(KCl) from Vis-NIR spectra acquired from a set of globally distributed soil samples.
Keyword:
Chemical measurement data analysis
Intelligent visual analytics
pXRF Data visualization
Soil property predictions
Vis-NIR spectra
Machine learning and deep learning
期刊
IF:
8.9
论文数:
10.0K
被引数:
4.8W
机构
引用论文
Min-max vs. max-min flow control algorithms for optimal computer network capacity assignment优化计算机网络容量分配的最小-最大vs.最大-最小流量控制算法
Prediction of soil fertility via portable X-ray fluorescence (pXRF) spectrometry and soil texture in the Brazilian Coastal Plains
GEODERMA
IF6.6
Soil texture prediction in tropical soils: A portable X-ray fluorescence spectrometry approach
GEODERMA
IF6.6
Predictions of Cu, Zn, and Cd Concentrations in Soil Using Portable X-Ray Fluorescence Measurements
SENSORS
IF3.5
Application of Vis-NIR spectroscopy for determination the content of organic matter in saline-alkali soilsVis-nir光谱在盐碱土壤有机质含量测定中的应用
没有更多内容

