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Wireless Sensor Networks, Edge Computing, and Farm Connectivity
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Authors
, C
Albuquerque, M
Andrade, M
Andrade, M
Andreoli, A
Bianchi, R
Carvalho, F.R
Cella Ceriotti, V
Chaves, C
Coelho, A.L
Costa Piazza, G
Costalonga Vargas, B
Esseili, M
Everett, M
Feldman, M
Furtado Junior, M.R
Glier, C
Heideker, A
Hermes, M
Kamienski, C
Kaur, D
Logli, M.F
Marques, J.R
Moreira, M.C
Morgan Pereira, P.H
Müller, I
Onyeoguzoro, D
Paula, G.O
Pereira, L.E
Pignaton de Freitas, E
Ramasamy, R.P
Rubio, G.F
Rubio, J.F
Santos Comelli da Silveira, L
Shovic, J.C
Silva, D
Soares de Souza, C
Tech, A.R
Toledo, R
Usman, K
Wagner, N.K
Wing, K
da Cruz, O.R
de Souza Pazin, Y
Topics
Wireless Sensor Networks, Edge Computing, and Farm Connectivity
Type
Poster
Oral
Year
2026
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Filter results10 paper(s) found.

1. An AI-Ready Smart Adapter Architecture for Integrating Heterogeneous Agricultural IoT Systems Across the Edge–Cloud Continuum

The increasing adoption of Internet of Things (IoT) technologies in smart agriculture has resulted in highly heterogeneous environments composed of diverse sensors, communication protocols, and distributed computing layers. Agricultural systems typically operate across the edge–cloud continuum, encompassing field devices, intermediate processing nodes, and cloud-based platforms. While IoT platforms provide essential services for data ingestion and device management, they often face limi... D. Silva, A. Heideker, R. Bianchi, C. Kamienski

2. Autonomous Edge Computing Station for Precision Soil and Climate Monitoring in Remote and Low-Connectivity Environments

The expansion of Precision Agriculture (PA) into remote rural areas, particularly in developing countries like Brazil, is frequently hindered by severe infrastructure constraints. Large-scale adoption of digital tools faces the dual challenge of limited 4G/5G connectivity at the field level (the "talhão") and the high costs associated with conventional electrification and industrial-grade equipment. These barriers disproportionately affect small and medium-sized farmers, crea... M. Andrade, R. Toledo

3. Scalable Offline Infrastructure for Agriculture 4.0: A Linux-Gateway Architecture for Edge Connectivity and Data Sovereignty

Brazilian agribusiness has consolidated itself as an economic pillar, representing approximately 25% of the national GDP. However, the full rise of Agriculture 4.0 - characterized by the integration of IoT, Artificial Intelligence, and smart sensors -faces a scenario of profound technological inequality. Recent data indicate a disparate adoption of digital tools: while large-scale farms possess the financial capacity for complex infrastructures, small and medium-sized producers face connectiv... M. Andrade, C. Soares de souza

4. Development of a Label-free Electrochemical Biosensor for Detection of Infectious Hepatitis a Virus

One of the leading causes of foodborne viral illnesses in the world is Hepatitis A Virus, which is frequently involved in causing outbreaks linked to contaminated produce and shellfish (e.g., green onions and berries) due to contamination during cultivation, processing, or handling. HAV is highly stable in environment capable of remaining infectious on food matrices and in water for extended periods. Humans get infected primarily via the fecal-oral ro... D. Kaur, R.P. Ramasamy, M. Esseili

5. A Decentralized Digital Twin Architecture for Interoperable Digital Agriculture Systems

The increasing digitalization of agriculture has driven the widespread adoption of heterogeneous sensing systems, autonomous platforms, and data-driven decision-support tools. Despite these advances, interoperability limitations at both the syntactic and semantic levels remain a major challenge, hindering the scalable integration and coordinated operation of agricultural assets. Current agricultural systems are often developed as vertical, vendor-specific solutions, resulting in fragment... P.H. Morgan pereira, G. Costa piazza, K. Usman, L. Santos comelli da silveira, V. Cella ceriotti, Y. De souza pazin, E. Pignaton de freitas

6. Development of a LoRaWAN Network for Remote Sensing in Precision Agriculture

The modernization of agriculture through Agriculture 4.0 requires the use of advanced sensors and wireless communication networks for the precise monitoring of environmental variables and process optimization. However, the implementation of these Internet of Things (IoT) technologies in rural areas frequently faces the challenge of limited infrastructure over large territorial expanses. In this scenario, Low-Power Wide-Area Networks (LPWAN), specifically the LoRaWAN protocol, stand out for th... M. Hermes, M. Albuquerque, A. Andreoli, C. , C. Chaves

7. Satellite-IoT Integration for Digital Agriculture: Advances and Challenges

Agriculture is an essential pillar of global food security, demanding continuous digital integration from seed selection and planting to post-harvest logistics and crop distribution. In this scenario, seamless communication is the primary enabler for data-driven decision-making, ensuring that critical information regarding environmental variables, soil moisture, and direct plant health indicators reaches processing platforms fast enough for agile operational responses. However, the expansion ... M. Feldman, O.R. Da cruz, N.K. Wagner, C. Glier, I. Müller

8. Application for Pixel-level Segmentation and Quantification of Lignified Fibers (Sclerenchyma) and Parenchyma in Microscopic Images of Sugarcane Culms

Quantifying lignified tissues in sugarcane culms (Saccharum spp.) is essential for anatomical characterizations and for inferences related to biomass quality and the potential uses of plant material. Conventional methods may require specific laboratory procedures and manual steps in digital analysis, increasing processing time and reliance on skilled operators. In this context, computer vision techniques applied to microscopic images constitute an accessible and reproducible alternat... G.F. rubio, J.F. Rubio, L.E. Pereira, J.R. Marques, A.R. Tech, M.F. Logli

9. Evaluation of Variable-Rate Application of Growth Regulator in Cotton

The application of plant growth regulators in cotton is widely used to control excessive vegetative growth and improve plant architecture. However, the spatial variability present in agricultural fields may reduce the efficiency of conventional fixed-rate application, making variable-rate application (VRA) a promising alternative. The objective of this study was to evaluate the effect of fixed-rate and variable-rate application of the growth regulator mepiquat chloride on plant height, leaf a... B. Costalonga vargas, M.R. Furtado junior, G.O. Paula, A.L. Coelho, M.C. Moreira, F.R. Carvalho

10. An Open-Source, Universal Arduino Library for LoRaWAN Integration with Low-Cost, Long-Range Agricultural Sensor Networks

The Data-Gator is a low-cost, open-source sensor platform built on the ESP32 microcontroller. It supports I2C, analog, and Bluetooth Low Energy (BLE) sensor interfaces and can be configured without writing any code. It has been tested at a vineyard and an organic orchard, where it collects readings from a number of sensors at regular intervals. While the platform performs well in these settings, it currently relies on WiFi to send data back from the field. This l... K. Wing, D. Onyeoguzoro, M. Everett, J.C. Shovic