给植物浇水多少才够?灌溉控制的最新技术:关于精准灌溉的进展、挑战和机遇

Lina Owino, D. Söffker
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摘要

随着全球人口的迅速增长,对淡水资源的需求越来越大,越来越多地关注针对植物特定需求的灌溉技术似乎是最大限度地减少淡水总消耗的一种解决方案。精确灌溉方法通过控制向植物供水的时间和数量,寻求在产量和灌溉用水量之间实现可接受的折衷。目标是保持土壤的含水量,实现产量方面的特定水分利用效率,或将植物对水分胁迫的生理反应保持在预定限度内。依靠土壤湿度测量来确定灌溉用水需求,不能充分解决土壤中水的不均匀分布问题。人们对直接从生理反应中确定植物水分状况的研究兴趣日益浓厚。本文综述了基于不同植物水分状况评估技术的灌溉控制方法。重点是所讨论的控制方法的应用规模,这一方面在之前的灌溉控制方法讨论中没有得到足够深入的考虑。对观察到的优点和缺点以及支持用于量化植物水分状况的各种方法的技术进步的讨论扩展了综述。将可能对植物水分状况的确定以及灌溉用水需求的最佳时间和量化产生影响的新趋势整合在一起,以显示最新结果。展望精确灌溉的未来,我们将更加依赖基于植物的信号,无论是在控制变量(即植物水分状态)的表征方面,还是在数量和时间方面产生控制器输出方面。
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How much is enough in watering plants? State-of-the-art in irrigation control: Advances, challenges, and opportunities with respect to precision irrigation
With a rapidly expanding global population placing an ever growing demand on freshwater resources, an increased focus on irrigation techniques tailored to the specific needs of plant appears as one solution to minimize overall freshwater consumption. Precision irrigation methods seek to realize an acceptable compromise between yield and irrigation water consumption through control of the timing and quantity of water supplied to plants. The goal is to maintain the water content of the soil, achieve specific water use efficiency with regard to yield or maintain the physiological response of the plant to water stress within predetermined limits. Reliance on soil moisture measurements to establish irrigation water demand inadequately addresses heterogenous distribution of water in soil. Growing research interest is observed detailing the determination of plant water status directly from physiological responses. This paper reviews irrigation control approaches based on different plant water status assessment techniques. A distinct focus is made on application scale of the discussed control approaches, an aspect that has not been considered intensively enough in previous discussions of irrigation control approaches. A discussion of the observed strengths and shortcomings and technological advances supporting the various methods used to quantify plant water status extends the review. Emerging trends that are likely to have an impact on plant water status determination and optimal timing and quantification of irrigation water requirements are integrated to show latest results. A peek into the future of precision irrigation foresees greater reliance on plant-based signals, both in characterization of the control variable, namely the plant water status, and in generation of controller outputs in terms of quantity and timing.
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