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Integration of Hyperspectral Imaging and AI Techniques for Crop Type Mapping: Present Status, Trends, and Challenges
by
Laamrani, Ahmed
, Bourriz, Mohamed
, Hajji, Hicham
, El-Battay, Ali
, Abdelali, Hamd Ait
, Chehbouni, Abdelghani
, Elbouanani, Nadir
, Amazirh, Abdelhakim
, Bourzeix, François
in
Agricultural production
/ Algorithms
/ Artificial intelligence
/ Artificial satellites
/ Barley
/ Classification
/ Computational linguistics
/ crop mapping
/ Crops
/ Deep learning
/ Drone aircraft
/ Food security
/ Food supply
/ geospatial foundation models
/ Graph neural networks
/ Hyperspectral imaging
/ hyperspectral remote sensing
/ Image processing
/ Integration
/ Keywords
/ Language processing
/ Machine learning
/ Mapping
/ Natural language interfaces
/ Neural networks
/ Remote sensing
/ Research methodology
/ Sensors
/ Sustainable agriculture
/ Sustainable development
/ Unmanned aerial vehicles
/ Wheat
2025
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Integration of Hyperspectral Imaging and AI Techniques for Crop Type Mapping: Present Status, Trends, and Challenges
by
Laamrani, Ahmed
, Bourriz, Mohamed
, Hajji, Hicham
, El-Battay, Ali
, Abdelali, Hamd Ait
, Chehbouni, Abdelghani
, Elbouanani, Nadir
, Amazirh, Abdelhakim
, Bourzeix, François
in
Agricultural production
/ Algorithms
/ Artificial intelligence
/ Artificial satellites
/ Barley
/ Classification
/ Computational linguistics
/ crop mapping
/ Crops
/ Deep learning
/ Drone aircraft
/ Food security
/ Food supply
/ geospatial foundation models
/ Graph neural networks
/ Hyperspectral imaging
/ hyperspectral remote sensing
/ Image processing
/ Integration
/ Keywords
/ Language processing
/ Machine learning
/ Mapping
/ Natural language interfaces
/ Neural networks
/ Remote sensing
/ Research methodology
/ Sensors
/ Sustainable agriculture
/ Sustainable development
/ Unmanned aerial vehicles
/ Wheat
2025
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Do you wish to request the book?
Integration of Hyperspectral Imaging and AI Techniques for Crop Type Mapping: Present Status, Trends, and Challenges
by
Laamrani, Ahmed
, Bourriz, Mohamed
, Hajji, Hicham
, El-Battay, Ali
, Abdelali, Hamd Ait
, Chehbouni, Abdelghani
, Elbouanani, Nadir
, Amazirh, Abdelhakim
, Bourzeix, François
in
Agricultural production
/ Algorithms
/ Artificial intelligence
/ Artificial satellites
/ Barley
/ Classification
/ Computational linguistics
/ crop mapping
/ Crops
/ Deep learning
/ Drone aircraft
/ Food security
/ Food supply
/ geospatial foundation models
/ Graph neural networks
/ Hyperspectral imaging
/ hyperspectral remote sensing
/ Image processing
/ Integration
/ Keywords
/ Language processing
/ Machine learning
/ Mapping
/ Natural language interfaces
/ Neural networks
/ Remote sensing
/ Research methodology
/ Sensors
/ Sustainable agriculture
/ Sustainable development
/ Unmanned aerial vehicles
/ Wheat
2025
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Integration of Hyperspectral Imaging and AI Techniques for Crop Type Mapping: Present Status, Trends, and Challenges
Journal Article
Integration of Hyperspectral Imaging and AI Techniques for Crop Type Mapping: Present Status, Trends, and Challenges
2025
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Overview
Accurate and efficient crop maps are essential for decision-makers to improve agricultural monitoring and management, thereby ensuring food security. The integration of advanced artificial intelligence (AI) models with hyperspectral remote sensing data, which provide richer spectral information than multispectral imaging, has proven highly effective in the precise discrimination of crop types. This systematic review examines the evolution of hyperspectral platforms, from Unmanned Aerial Vehicle (UAV)-mounted sensors to space-borne satellites (e.g., EnMAP, PRISMA), and explores recent scientific advances in AI methodologies for crop mapping. A review protocol was applied to identify 47 studies from databases of peer-reviewed scientific publications, focusing on hyperspectral sensors, input features, and classification architectures. The analysis highlights the significant contributions of Deep Learning (DL) models, particularly Vision Transformers (ViTs) and hybrid architectures, in improving classification accuracy. However, the review also identifies critical gaps, including the under-utilization of hyperspectral space-borne imaging, the limited integration of multi-sensor data, and the need for advanced modeling approaches such as Graph Neural Networks (GNNs)-based methods and geospatial foundation models (GFMs) for large-scale crop type mapping. Furthermore, the findings highlight the importance of developing scalable, interpretable, and transparent models to maximize the potential of hyperspectral imaging (HSI), particularly in underrepresented regions such as Africa, where research remains limited. This review provides valuable insights to guide future researchers in adopting HSI and advanced AI models for reliable large-scale crop mapping, contributing to sustainable agriculture and global food security.
Publisher
MDPI AG
Subject
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