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优化空间植物生长单元的 LED 照明:光通量密度、红对白光比和间歇光脉冲的联合效应。

Optimizing LED lighting for space plant growth unit: Joint effects of photon flux density, red to white ratios and intermittent light pulses.

机构信息

Lomonosov Moscow State University, Moscow, Russia.

State Science Center - Institute for Biomedical Problems RAS, Moscow, Russia.

出版信息

Life Sci Space Res (Amst). 2016 Nov;11:29-42. doi: 10.1016/j.lssr.2016.12.001. Epub 2016 Dec 6.

Abstract

The aim of this work were to choose a quantitative optimality criterion for estimating the quality of plant LED lighting regimes inside space greenhouses and to construct regression models of crop productivity and the optimality criterion depending on the level of photosynthetic photon flux density (PPFD), the proportion of the red component in the light spectrum and the duration of the duty cycle (Chinese cabbage Brassica сhinensis L. as an example). The properties of the obtained models were described in the context of predicting crop dry weight and the optimality criterion behavior when varying plant lighting parameters. Results of the fractional 3-factor experiment demonstrated the share of the PPFD level participation in the crop dry weight accumulation was 84.4% at almost any combination of other lighting parameters, but when PPFD value increased up to 500µmol ms the pulse light and supplemental light from red LEDs could additionally increase crop productivity. Analysis of the optimality criterion response to variation of lighting parameters showed that the maximum coordinates were the following: PPFD = 500µmol ms, about 70%-proportion of the red component of the light spectrum (PPFD/PPFD = 1.5) and the duty cycle with a period of 501µs. Thus, LED crop lighting with these parameters was optimal for achieving high crop productivity and for efficient use of energy in the given range of lighting parameter values.

摘要

本工作旨在选择一种定量优化标准,用于评估室内温室植物 LED 照明制度的质量,并构建基于光合光子通量密度 (PPFD)、光谱中红光成分比例和占空比水平的作物生产力和优化标准的回归模型(以白菜 Brassica chinensis L. 为例)。在预测作物干重和植物照明参数变化时,对所得模型的特性进行了描述。分数 3 因子实验的结果表明,在其他照明参数的几乎任何组合下,PPFD 水平对作物干重积累的参与率为 84.4%,但当 PPFD 值增加到 500µmol ms 时,脉冲光和补充红光 LED 光可以额外提高作物生产力。对优化标准对照明参数变化的响应分析表明,最大坐标为:PPFD = 500µmol ms,光光谱中红光成分的比例约为 70%(PPFD/PPFD = 1.5),占空比周期为 501µs。因此,在给定的照明参数值范围内,具有这些参数的 LED 作物照明对于实现高作物生产力和有效利用能源是最优的。

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