首页> 外文会议>Conference on Light-Emitting Diodes: Research, Manufacturing, and Applications; 20080122-24; San Jose,CA(US) >High-power LED illumination system for photosynthetic research on potted plant canopies
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High-power LED illumination system for photosynthetic research on potted plant canopies

机译:大功率LED照明系统,用于盆栽植物冠层的光合作用研究

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The high energy efficiency and radiant flux of high-power LED devices has lead to many new applications of LED lighting. Within the more production oriented applied plant research, there is a need for illumination systems that ensures a high irradiance, spectral control and homogeneous illumination of a large plant canopy to ensure reproducible results over long term measurements. A new high power LED illumination system is presented. It has been designed and developed for illumination of a plant canopy area of 60 x 80 cm2 in a climate chamber where photosynthesis of the whole canopy can be measured. The LED system extends the precise control of the chamber climate with computer control and long term stability of the irradiance and spectral composition of the illumination. High-power red and blue (at 455 and 639 nm) LED devices have been chosen that coincides with the absorption peaks of chlorophyll. The illumination system allows for a maximum irradiance of 6.3 W/cm2 corresponding to a photosynthetic photon flux density (PPFD) of 300 μmol m~(-1) s~(-1). The spectral composition of the light given by the ratio of blue photons compared to the total number of red and blue photons can be adjusted from 0-40 % keeping the irradiance at a constant level. Spectroradiometric 2D grid measurement at the plant top level shows homogeneity of ± 5% of the irradiance and ± 5% of the spectral distribution, over almost the entire canopy area. Initial experiments carried out on Chrysanthemum plants showing the dependence of the photosynthesis on blue light fraction is presented and discussed.
机译:大功率LED器件的高能效和辐射通量导致了LED照明的许多新应用。在更加面向生产的应用植物研究中,需要一种照明系统,以确保对大型植物冠层进行高辐照度,光谱控制和均匀照明,以确保长期测量结果可重复。提出了一种新的大功率LED照明系统。它的设计和开发是为了在气候室中照亮60 x 80 cm2的植物冠层面积,在该室中可以测量整个冠层的光合作用。 LED系统通过计算机控制以及辐照度和照明光谱成分的长期稳定性,扩展了对箱室气候的精确控制。选择了与叶绿素吸收峰一致的高功率红色和蓝色(在455和639 nm处)LED器件。该照明系统允许最大6.3 W / cm2的辐照度,对应于300μmolm〜(-1)s〜(-1)的光合光子通量密度(PPFD)。通过将蓝色光子与红色和蓝色光子的总数相比的比值给出的光的光谱成分可以在0-40%之间进行调节,以保持辐照度处于恒定水平。在工厂顶层的分光辐射二维栅格测量显示,几乎在整个冠层区域内,辐照度的均匀度为±5%,光谱分布的均匀度为±5%。介绍并讨论了在菊花植物上进行的初步实验,表明光合作用对蓝光分数的依赖性。

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