灌溉枢纽中心以低成本连接,减少作物对水的需求

Olivier Debauche, Meryem El Moulat, S. Mahmoudi, P. Manneback, F. Lebeau
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引用次数: 32

摘要

灌溉技术,特别是中心灌溉技术,在世界范围内广泛应用,以满足作物的灌溉需求。与其他灌溉方法(如滴灌系统)相比,这种灌溉方法的效率较低,而且通常它们在用水时没有考虑到植物的实际需要。本文提出了一种基于物联网(IoT)、地理信息系统(GIS)和准实时云中的用水需求的自动化系统,以提高用水效率。事实上,枢轴中心的每一部分都以不同的速度移动;因此,必须单独控制以优化灌溉产量。此外,还需要综合作物发育阶段、土壤异质性、径流、排水、土壤成分、养分和水分含量等因素。本文开发了一个集传感器、地理信息系统、物联网和云计算于一体的完整系统。这种方法可以在不降低产量的情况下自动细粒度地消耗水。除此之外,数据的收集和土壤湿度的测量将使蒸散发系数适应当地的天气,而不必采用蒸散测量。所提出的架构允许存储和处理实时、时间序列数据和低优先级数据,如数字表型领域中使用的批量处理的3D图像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Irrigation pivot-center connected at low cost for the reduction of crop water requirements
Irrigation, particularly pivot-center, is widely used around the world to fill the need of crop watering. This method of irrigation has a low efficiency compared to other methods of irrigation such as drip systems and generally they use water without consider the real need of plants. In this paper we propose an automation system based on the Internet of Things (IoT), Geographic Information System (GIS) and quasi real-time in the cloud of water requirements to improve the efficiency of water use. Indeed, each segment of the pivot-center moves at a different speed compared to others; thus, must be individually controlled to optimize the yield of irrigation. Moreover, it necessary to integrate factors such as stage of crops' development, heterogeneity of soil, runoff, drainage, soil components, nutrients and moisture content. In this paper we develop a complete system integrating sensors, GIS, Internet of Things and cloud computing. This approach allows to automate fine-grained the consumption of water without decreasing the yield. In addition to that, the collect of data and the soil moisture measurement will allow to adapt coefficient of evapotranspiration to local weather without having to resort to lysimetric measures. The proposed architecture allows to store and treat real-time, time series data and low-priority data such as 3D images used in digital phenotyping field which are treated with batch processing.
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