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Daytime Solar Greenhouse Plant Light Spectum Control System

机译:日间太阳能温室植物光谱控制系统

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The design and model of greenhouse daytime constant light source spectrum from sunlight and RGB LED controlled is present in this title. According to the light color requirement that the special plant need to grow are different in each type of plant. When the requirement of plant are known, we have designed constant frequency spectrum of light in the greenhouse throughout the daytime. The design system is based on solar light which is difference in the color and intensity of light on the daytime. Light frequency adjustment system interferes with the solar spectrum in the greenhouse. The system stops interfering when the optical spectrum is the programed designed wavelength of light. The light spectrum of each color (red, blue and green) measured is normalized to realize the proportion of each color that need to intervene. The example of a plant used in a system test is a cannabis an economic crop in which each pre-harvest period requires a different spectrum ratio color of light. Other variables of plant growth be controlled as well. The sunlight that can pass through the outdoor greenhouse has already been filtered from UV and IR rays. The experimental results show the higher grow rate of the marijuana that plant in the adjust spectrum greenhouse is 12%. We also found that light spectral-optimized cannabis get a number leaf density greater than 30% compare to being grown in an uncontrolled nearby outdoor greenhouse.
机译:本标题中存在阳光和RGB LED控制温室白天恒定光源光谱的设计和型号。根据颜色要求,在每种植物中,特种植物需要生长的不同。当植物的要求是已知的,我们在整个白天在温室中设计了恒定的光频谱。设计系统基于太阳灯,这是白天光的颜色和强度的差异。光频调节系统干扰温室中的太阳光谱。当光谱是光谱的光谱的指定设计波长时,系统停止干扰。测量的每种颜色(红色,蓝色和绿色)的光谱标准化以实现需要干预的每种颜色的比例。在系统测试中使用的植物的示例是大麻的经济作物,其中每个预收期需要不同的光谱比光。还控制其他植物生长的变量。可以通过室外温室的阳光从UV和IR光线过滤。实验结果表明,调整频谱温室的植物中植物的成长率较高为12%。我们还发现光谱优化的大麻的数量叶片密度大于30%,以比较在不受控制的附近的户外温室中生长。

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