[HTML][HTML] An exploration of the latest developments, obstacles, and potential future pathways for climate-smart agriculture

A Raihan, M Ridwan, MS Rahman - Climate Smart Agriculture, 2024 - Elsevier
Global climate change presents major challenges to agricultural production, the most
significant this century being mitigating greenhouse gas (GHG) emissions and achieving …

Industry 4.0 technologies in Smart Agriculture: A review and a Technology Assessment Model proposition

D Uztürk, G Büyüközkan - Technological Forecasting and Social Change, 2024 - Elsevier
Amidst the growing need for sustainable evolution in the agricultural sector, this study
explores the progressive integration of Industry 4.0 (I4. 0) technologies to foster the transition …

Drivers and barriers to digital transformation in agriculture: An evolutionary game analysis based on the experience of China

Y Sun, Y Miao, Z Xie, R Wu - Agricultural systems, 2024 - Elsevier
CONTEXT The digital transformation of agriculture is a complex and dynamic process
involving numerous stakeholders. Inadequate participation and collaboration from …

[HTML][HTML] IoT-enabled fire detection for sustainable agriculture: A real-time system using flask and embedded technologies

A Morchid, R Jebabra, A Ismail, HM Khalid… - Results in …, 2024 - Elsevier
In modern agriculture, the threat of fire poses significant economic and environmental risks.
Additionally, traditional fire detection methods are inadequate and poorly integrated with …

Digital agriculture's impact on carbon dioxide emissions varies with the economic development of Chinese provinces

M Ma, J Li, J Song, X Chen - Communications Earth & Environment, 2024 - nature.com
Digital empowerment is a dynamic process of complementary digital technology and
production factors and plays a critical role in achieving the dual carbon objectives of the …

[PDF][PDF] Status of Farm Automation, Advances, Trends, and Scope in India

M Padhiary - Int. J. Sci. Res. IJSR, 2024 - researchgate.net
Farm automation, in particular, has brought about tremendous changes in agriculture as a
result of the rapid growth of technology. This study investigates farm automation's current …

[HTML][HTML] Drones in Precision Agriculture: A Comprehensive Review of Applications, Technologies, and Challenges

R Guebsi, S Mami, K Chokmani - Drones, 2024 - mdpi.com
In the face of growing challenges in modern agriculture, such as climate change,
sustainable resource management, and food security, drones are emerging as essential …

Unmanned aerial vehicles (UAVs): an adoptable technology for precise and smart farming

S Makam, BK Komatineni, SS Meena… - Discover Internet of Things, 2024 - Springer
The global population is rapidly increasing, so there is a critical requirement to satisfy the
food production demand. Conventional methods of agriculture are inadequate to meet …

Impact of agricultural digitalization on carbon emission intensity of planting industry: Evidence from China

D Wang, C Chen, N Zhu, X Xu - Heliyon, 2024 - cell.com
Studying the impact of agricultural digitalization (ADT) on the carbon emission intensity of
planting industry (PCI) can help promote sustainable development and realize the" dual …

Research on the Spatial Dynamic Evolution of Digital Agriculture—Evidence from China

J Meng, B Zhao, Y Song, X Lin - Sustainability, 2024 - mdpi.com
Digital agriculture serves as a pivotal means of ushering in innovative agricultural practices
and achieving sustainable agricultural development. Although agricultural digitalization has …