精准农业
互操作性
无线传感器网络
计算机科学
领域(数学)
实时计算
农业
持续性
环境监测
人口
控制重构
遥感
资源(消歧)
数据集成
系统工程
GSM演进的增强数据速率
无线
数据采集
系统集成
传输(电信)
环境资源管理
数据收集
基站
环境科学
环境数据
自动化
持续监测
系统体系结构
作者
Matilde Lopes Sousa,Ana Marques Alves,Rodrigo Antunes,Martim Aguiar,Pedro Dinis Gaspar,Nuno Pereira
出处
期刊:Agriculture
[Multidisciplinary Digital Publishing Institute]
日期:2025-12-28
卷期号:16 (1): 69-69
被引量:1
标识
DOI:10.3390/agriculture16010069
摘要
This study presents an in-depth exploration of an innovative monitoring system that contributes to precision agriculture (PA) and supports sustainability and biodiversity. Amidst the challenges of global population growth and the need for sustainable, high-yield agricultural practices, PA, supported by modern technology and data-driven methodologies, emerges as a pivotal approach for optimizing crop yield and resource management. The proposed monitoring system integrates Wireless sensor networks (WSNs) into PA, enabling real-time acquisition of environmental data and multimodal observations through cameras and microphones, with data transmission via LTE and/or LoRaWAN for cloud-based analysis. Its main contribution is a physically modular, pole-mounted station architecture that simplifies sensor integration and reconfiguration across use cases, while remaining solar-powered for long-term off-grid operation. The system was evaluated in two field deployments, including a year-long wild-flora monitoring campaign (three stations; 365 days; 1870 images; 63–100% image-based operational availability), during which stations remained operational through a wildfire event. In the viticulture deployment, the acoustic module supported bat monitoring as a bio-indicator of ecosystem health, achieving bat call detection performance of 0.94 (AP Det) and species classification performance of 0.85 (mAP Class). Overall, the results support the use of modular, energy-aware monitoring stations to perform sustained agricultural and ecological data collection under practical field constraints.
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