TY - GEN
T1 - Methodology for the Design of Long-Distance Control based on the LoRa Protocol
AU - Urbano, Kitty
AU - Auccahuasi, Wilver
AU - Meza, Sandra
AU - Espindola-Milla, Armando
AU - Gutierrez-Quispe, César
AU - Castro-Mejia, Percy
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - Information and communications technologies enable the development of technological solutions that were previously difficult and expensive to implement, such as implementing long-distance control systems, which would require high-power communications equipment, antenna systems, and power supplies. In this article, we present a methodology for implementing long-distance communications systems based on the LoRa protocol. We describe the benefits of implementing the protocol through an application example, simulating surveillance of large areas such as farmland, large warehouses, or other environments where a security system is necessary due to their extensive coverage area and difficult access for monitoring. We present the hardware required for its implementation, as well as the code for configuring and connecting devices, generating a network of devices based on the LoRa protocol. In conclusion, we present the uses and applications for exploiting this technology so that it can be replicated and scaled according to connection and control needs.
AB - Information and communications technologies enable the development of technological solutions that were previously difficult and expensive to implement, such as implementing long-distance control systems, which would require high-power communications equipment, antenna systems, and power supplies. In this article, we present a methodology for implementing long-distance communications systems based on the LoRa protocol. We describe the benefits of implementing the protocol through an application example, simulating surveillance of large areas such as farmland, large warehouses, or other environments where a security system is necessary due to their extensive coverage area and difficult access for monitoring. We present the hardware required for its implementation, as well as the code for configuring and connecting devices, generating a network of devices based on the LoRa protocol. In conclusion, we present the uses and applications for exploiting this technology so that it can be replicated and scaled according to connection and control needs.
KW - Hardware
KW - connection
KW - device
KW - interconnection
KW - protocol
UR - https://www.scopus.com/pages/publications/105030327149
U2 - 10.1109/ICoICI65217.2025.11252533
DO - 10.1109/ICoICI65217.2025.11252533
M3 - Conference contribution
AN - SCOPUS:105030327149
T3 - Proceedings of 3rd International Conference on Intelligent Cyber Physical Systems and Internet of Things, ICoICI 2025
SP - 2174
EP - 2178
BT - Proceedings of 3rd International Conference on Intelligent Cyber Physical Systems and Internet of Things, ICoICI 2025
T2 - 3rd International Conference on Intelligent Cyber Physical Systems and Internet of Things, ICoICI 2025
Y2 - 17 September 2025 through 19 September 2025
ER -