Development of Microclimate Data Recorder on Coffee-Pine Agroforestry Using LoRaWAN and IoT Technology

H. Nurwarsito, D. Suprayogo, S. P. Sakti, Cahyo Prayogo, Simon Oakley, A. Wibawa, Resnu Wahyu Adaby
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Abstract

Microclimate monitoring in agroforestry is very important to understand the complex interactions between vegetation, soil, and the environment. Microclimate parameters include air and soil temperature, air humidity, soil moisture, and light intensity. This research aims to develop a new microclimate data recording system for coffee-pine agroforestry, utilizing LoRaWAN and IoT technology to capture real-time microclimate parameters. Unlike traditional data loggers that require manual download on-site, this innovative system enables instant data download from IoT servers, thereby increasing data efficiency and accessibility. The system proved effective, significantly improving the precision of air temperature and humidity, as well as soil temperature measurements, with an average accuracy of 100%. However, soil moisture and light intensity recorded lower accuracies of 81.23% and 82.56%, respectively, indicating potential areas for future research and system refinement. The system maintains a 15-minute sampling period, aligning with conventional datalogger intervals. This represents an advancement in precision agriculture for microclimate monitoring, enabling the data to be utilized in decision-making for agroforestry management, which involves complex interactions between the local microclimate and the broader ecological system. It underscores the significance of sustainable land use as a response to global climate change.
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利用 LoRaWAN 和物联网技术开发咖啡-松树农林业小气候数据记录仪
农林业中的微气候监测对于了解植被、土壤和环境之间复杂的相互作用非常重要。微气候参数包括空气和土壤温度、空气湿度、土壤湿度和光照强度。本研究旨在利用 LoRaWAN 和物联网技术为咖啡-松树农林业开发一种新型微气候数据记录系统,以实时捕捉微气候参数。与需要现场手动下载的传统数据记录器不同,该创新系统可从物联网服务器上即时下载数据,从而提高了数据效率和可访问性。事实证明,该系统非常有效,大大提高了空气温度和湿度以及土壤温度测量的精确度,平均精确度达到 100%。然而,土壤湿度和光照强度的精确度较低,分别为 81.23% 和 82.56%,这表明未来研究和系统改进的潜在领域。该系统的采样周期为 15 分钟,与传统数据记录器的采样间隔一致。这代表了精准农业在小气候监测方面的进步,使数据能够用于农林业管理决策,因为农林业管理涉及当地小气候和更广泛的生态系统之间复杂的相互作用。它强调了可持续土地利用作为应对全球气候变化的重要意义。
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