TY - GEN
T1 - Proposal for a model of smart agriculture based on the application of ancestral knowledge in the cultivation of medicinal plants
AU - Pilamunga, Estefania
AU - Tubón, Edith
AU - Tigre, Franklin
AU - Lema, Freddy
AU - Morales, Luis
AU - Sánchez, Carlos H.
AU - Rosero-Mantilla, Cesar
AU - Siguenza-Guzman, Lorena
AU - Córdova, Patricio
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - This research describes the integration of smart agriculture with ancestral knowledge in the cultivation of medicinal plants, addressing current challenges in global agriculture. Technological advances, such as artificial vision and the Internet of Things (IoT), have driven precision agriculture, offering opportunities to optimize yields and climate resilience. However, disparities in access to these technologies persist due to cultural and economic factors. Smart agriculture, driven by data analysis and sensor technologies, aims to reduce these gaps by integrating traditional practices with modern innovations. The adoption of technologies like remote sensing holds promise for improving agricultural productivity. This research proposes a model that combines ancestral wisdom with advanced technologies to enhance the efficiency, quality, and sustainability of medicinal plant cultivation, thus benefiting communities and preserving biodiversity.
AB - This research describes the integration of smart agriculture with ancestral knowledge in the cultivation of medicinal plants, addressing current challenges in global agriculture. Technological advances, such as artificial vision and the Internet of Things (IoT), have driven precision agriculture, offering opportunities to optimize yields and climate resilience. However, disparities in access to these technologies persist due to cultural and economic factors. Smart agriculture, driven by data analysis and sensor technologies, aims to reduce these gaps by integrating traditional practices with modern innovations. The adoption of technologies like remote sensing holds promise for improving agricultural productivity. This research proposes a model that combines ancestral wisdom with advanced technologies to enhance the efficiency, quality, and sustainability of medicinal plant cultivation, thus benefiting communities and preserving biodiversity.
KW - ancestral knowledge
KW - medicinal plants
KW - precision agriculture
KW - smart agriculture
KW - technological integration
UR - https://www.scopus.com/pages/publications/85208827435
U2 - 10.1109/COLCOM62950.2024.10720307
DO - 10.1109/COLCOM62950.2024.10720307
M3 - Contribución a la conferencia
AN - SCOPUS:85208827435
T3 - 2024 IEEE Colombian Conference on Communications and Computing, COLCOM 2024 - Proceedings
BT - 2024 IEEE Colombian Conference on Communications and Computing, COLCOM 2024 - Proceedings
A2 - Briceno Rodriguez, Diana Z.
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2024 IEEE Colombian Conference on Communications and Computing, COLCOM 2024
Y2 - 21 August 2024 through 24 August 2024
ER -