Evaluating soil nutrients of Dacrydium pectinatum in China using machine learning techniques
Type de ressource
Auteurs/contributeurs
- Wu, Chunyan (Auteur)
- Chen, Yongfu (Auteur)
- Hong, Xiaojiang (Auteur)
- Liu, Zelin (Auteur)
- Peng, Changhui (Auteur)
Titre
Evaluating soil nutrients of Dacrydium pectinatum in China using machine learning techniques
Résumé
Abstract
Background
The accurate estimation of soil nutrient content is particularly important in view of its impact on plant growth and forest regeneration. In order to investigate soil nutrient content and quality for the natural regeneration of
Dacrydium pectinatum
communities in China, designing advanced and accurate estimation methods is necessary.
Methods
This study uses machine learning techniques created a series of comprehensive and novel models from which to evaluate soil nutrient content. Soil nutrient evaluation methods were built by using six support vector machines and four artificial neural networks.
Results
The generalized regression neural network model was the best artificial neural network evaluation model with the smallest root mean square error (5.1), mean error (− 0.85), and mean square prediction error (29). The accuracy rate of the combined
k
-nearest neighbors (
k
-NN) local support vector machines model (i.e.
k
-nearest neighbors -support vector machine (KNNSVM)) for soil nutrient evaluation was high, comparing to the other five partial support vector machines models investigated. The area under curve value of generalized regression neural network (0.6572) was the highest, and the cross-validation result showed that the generalized regression neural network reached 92.5%.
Conclusions
Both the KNNSVM and generalized regression neural network models can be effectively used to evaluate soil nutrient content and quality grades in conjunction with appropriate model variables. Developing a new feasible evaluation method to assess soil nutrient quality for
Dacrydium pectinatum
, results from this study can be used as a reference for the adaptive management of rare and endangered tree species. This study, however, found some uncertainties in data acquisition and model simulations, which will be investigated in upcoming studies.
Publication
Forest Ecosystems
Volume
7
Numéro
1
Pages
30
Date
12/2020
Abrév. de revue
For. Ecosyst.
Langue
en
ISSN
2197-5620
Consulté le
12/11/2024 19:58
Catalogue de bibl.
DOI.org (Crossref)
Référence
Wu, C., Chen, Y., Hong, X., Liu, Z., & Peng, C. (2020). Evaluating soil nutrients of Dacrydium pectinatum in China using machine learning techniques. Forest Ecosystems, 7(1), 30. https://doi.org/10.1186/s40663-020-00232-5
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