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Dynamic Model of Soil Moisture for Smart Irrigation Systems

机译:智能灌溉系统土壤水分动态模型

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摘要

In geographical areas subject to an arid climate, one of the most precious resources is water, which often get wasted due to inefficient irrigation systems. Automated irrigation systems which relies on closed loop control and feedback from sensors can help to closely match the water supply to the crop demand and avoid waste. In recent years, predictive control strategies were proposed for high tech watering systems which rely heavily on complex models incorporating variables such as crop water demand, soil evapotranspiration, weather conditions etc.. Through these models it is possible to anticipate the water demand of the crop, and give optimal irrigation scheduling with a significant reduction in water consumption. In this paper we developed a model of the soil moisture dynamics based on climatological data of the Kingdom of Bahrain. The model, which is based on the hydraulic balance approach, was validated by comparing its estimated output with real measurements.
机译:在干旱气候的地理区域中,最宝贵的资源之一是水,由于灌溉系统效率低下,水经常被浪费。依靠闭环控制和传感器反馈的自动灌溉系统可以帮助使供水与农作物需求紧密匹配,并避免浪费。近年来,提出了针对高科技灌溉系统的预测控制策略,该策略严重依赖于复杂的模型,这些模型结合了诸如作物需水量,土壤蒸散量,天气条件等变量。通过这些模型,可以预测作物的需水量,并提供最佳的灌溉计划,从而显着减少用水量。在本文中,我们根据巴林王国的气候数据开发了土壤水分动力学模型。该模型基于液压平衡方法,通过将其估计输出与实际测量值进行比较来验证。

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