Cultivation lighting optimization technology that achieves reduced electricity costs and increased production volume.
The EcoBoost LED solution is a technology that optimizes cultivation lighting in plant factories by optimizing the light irradiation conditions of the three colors of LEDs—red (R), green (G), and blue (B)—built into the RGB independent dimming LED plant cultivation device "AGRI-Oh! Series." This technology can reduce power consumption by approximately 25% while increasing production volume by about 1.5 times. This system allows for the adjustment of the light spectrum necessary for plant growth by independently dimming each color of LED, enabling efficient photosynthesis. Additionally, by adjusting the light irradiation patterns, it can provide lighting tailored to the plant growth cycle, enhancing energy usage efficiency. With this technology, plant factory operators can simultaneously achieve two important benefits: reduced electricity costs and increased production volume, contributing to the establishment of a sustainable plant production system.
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basic information
The "EcoBoost LED Solution" is a cultivation lighting optimization technology for plant factories. This technology can simultaneously reduce electricity costs and increase production, providing significant benefits to operators of artificial light plant factories, especially given that electricity costs currently account for about 25% of the production costs for leafy vegetables.
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Applications/Examples of results
In the cultivation device plant cellar, 6 test plants were planted in each tier of the 4-tier cultivation shelf and harvested after 21 days. Three of the 6 planted plants were selected as observation plants, and their plant height, plant width, leaf length, leaf width, and relative chlorophyll content (SPAD) were measured weekly during the cultivation period. After harvesting, the fresh weight (FW) was measured (g/3 plants). The water contained in the urethane medium and roots of each sample plant was carefully squeezed out, and the total FW was measured. After measuring the total FW, the plant was cut near the top of the urethane medium, and the edible part FW and non-edible part weight were measured separately. Furthermore, different light irradiation patterns were set under various conditions, and by measuring plant growth and yield, the most efficient light irradiation pattern was identified.
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