Optimal Parameters and Operating Modes of the Vertical Farm Lighting System: an Overview of World Research

D. A. Filatov, E. A. Avdeeva, I. Olonin
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Abstract

The vertical farm is a closed system, which is characterized by the most favorable climate with minimal interaction with the external environment. The optimal microclimate of vertical farms provides stable production of dry mass of crops, unlike greenhouses. At higher latitudes, heating greenhouses requires more electricity than lighting. The main task for expanding the geography of the study of vertical farms is to determine the optimal parameters and operating modes of lighting systems in order to minimize the cost of electricity in the production of a unit of production. (Research purpose) The research purpose is reviewing the world research on the optimal parameters and modes of the lighting system of vertical farms. (Materials and methods) Analyzed foreign studies on the use of artificial light sources in crop production for maximum production at minimum cost of purchased electricity. (Results and discussion) It has been shown that with a long photoperiod and low levels of photosynthetic photon flux density, light and electrical energy are used more efficiently within an equal daylight interval. (Conclusions) Based on the results of a review of world studies, it was revealed that a photoperiod of 16 hours a day is necessary for plants to achieve the greatest mass and minimum time spent when growing lettuce, basil, and microgreens. It was determined that the density of photosynthetic photon flux is minimally sufficient when growing microgreens – 100 micromoles per square meter per day (spectrum blue:red:far red light B:R:FR = 20:70:10), lettuce – 200 micromoles per square meter per day (red-blue light R:B = 70:30 and warm white light B:G:R:FR = 8:30:51:11, respectively), the basil has 250 micromoles per square meter per day (blue:red:high red light B:R:FR = 10:80:10).
垂直农场照明系统的优化参数与运行模式:国际研究综述
垂直农场是一个封闭的系统,其特点是最有利的气候,与外部环境的相互作用最小。与温室不同,垂直农场的最佳小气候提供了稳定的干量作物生产。在高纬度地区,温室供暖比照明需要更多的电力。扩展垂直农场地理研究的主要任务是确定照明系统的最佳参数和运行模式,以最大限度地降低单位生产中的电力成本。(研究目的)本研究的目的是综述国内外关于垂直农场照明系统最优参数和模式的研究现状。(材料与方法)分析国外在农作物生产中使用人工光源的研究,以最小的购电成本获得最大的产量。(结果和讨论)研究表明,在较长的光周期和较低水平的光合光子通量密度下,光能和电能在相同的日光间隔内被更有效地利用。(结论)根据一项世界研究综述的结果,揭示了每天16小时的光周期是植物在种植生菜、罗勒和微型蔬菜时达到最大质量和最短时间所必需的。经测定,在种植微型蔬菜时,光合光子通量的密度是最低的——每天每平方米100微摩尔(光谱蓝:红:远红光B:R:FR = 20:70:10),生菜——每天每平方米200微摩尔(红蓝光R:B = 70:30和暖白光B:G:R:FR = 8:30:51:11),罗勒每天每平方米250微摩尔(蓝:红:高红光B:R:FR = 10:80:10)。
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