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Development of a Simplified Smart Agriculture System for Small-scale Greenhouse Farming

机译:小型温室农业的简化智能农业系统的开发

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摘要

A challenge exists in horticultural greenhouse farming as a result of the current decline in the agriculture labor force in Japan. Although there is a need for cutting-edge technological Information and Communications Technology (ICT) application in agriculture, few small-scale farmers are willing to risk significant capital on sensing technologies. In this study, a simplified smart agriculture system using limited resource expense was developed and applied in a tomato greenhouse. The system's real-time information capability is composed of commercial inexpensive wireless sensor network (WSN) devices, and a developed web database (web DB) for daily activity data collection was used for crop environment monitoring and management. The crop microclimate environment was monitored on the basis of an agroclimatic index, namely, growing degree day (GDD). Microclimate spatiotemporal distributions using GDD were also determined, which showed well-defined microclimate variations within the greenhouse. Crop calendars were embedded into the developed web DB for tomato farms. We drew conclusions for better crop management and crop yields using our smart agriculture system. The applicability of the system based on initial cost, running costs, and the reliability of WSN data makes it cost-effective. Consequently, it could be used for the accurate crop production planning and decision making of cultivation activities.
机译:由于日本农业劳动力的当前减少,园艺温室农业面临挑战。尽管需要在农业中应用最先进的技术信息和通信技术(ICT),但很少有小规模农民愿意冒险在传感技术上投入大量资金。在这项研究中,开发了一种使用有限资源支出的简化智能农业系统,并将其应用于番茄温室。该系统的实时信息功能由价格低廉的商业无线传感器网络(WSN)设备组成,用于日常活动数据收集的发达Web数据库(Web DB)用于作物环境监测和管理。基于农业气候指数,即生长度日(GDD),对作物的小气候环境进行了监测。还确定了使用GDD的微气候时空分布,显示了温室内定义明确的微气候变化。作物日历被嵌入到为番茄农场开发的网络数据库中。我们得出结论,使用我们的智能农业系统可以更好地管理作物和提高产量。基于初始成本,运行成本以及WSN数据的可靠性的系统适用性使其具有成本效益。因此,它可以用于准确的作物生产计划和栽培活动的决策。

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