Real-Time Sensing and Control of Integrative Horticultural Lighting Systems

J Pub Date : 2020-07-23 DOI:10.3390/j3030020
D. Durmus
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引用次数: 11

Abstract

Optical radiation, including light, plays a crucial role in the structural development of plants through photomorphogenesis and the response to environmental changes. However, plant sensitivity to optical radiation widely varies across species. While research efforts are currently underway to discover the fundamentals of plant physiology, light sources with preprogrammed light settings (light recipes) are offered to clients to expedite plant growth. Since horticultural lighting research is in its infancy, prescribed lighting conditions are not likely to address every plants’ needs in terms of the spatial and spectral distribution, intensity, and duration of the light sources. However, it is possible to imagine an intelligent horticultural lighting system that can diagnose plants through sensors, and adjust the light intensity, the spatial and spectral distribution for the specific plant species with active feedback. Such an advanced real-time horticultural lighting system would consist of sensors to detect physiological markers from plants and environmental factors and an artificial intelligence algorithm to adjust the output. While the underlying technology for a real-time optimization system exists, the implementation and training would require further research.
综合园艺照明系统的实时传感与控制
包括光在内的光辐射通过光形态发生和对环境变化的反应,在植物的结构发育中发挥着至关重要的作用。然而,植物对光辐射的敏感性因物种而异。虽然目前正在进行研究工作,以发现植物生理学的基本原理,但为客户提供具有预编程光设置(光配方)的光源,以加快植物生长。由于园艺照明研究尚处于起步阶段,规定的照明条件不太可能满足每种植物在光源的空间和光谱分布、强度和持续时间方面的需求。然而,可以想象一个智能园艺照明系统,它可以通过传感器诊断植物,并通过主动反馈调整特定植物物种的光强、空间和光谱分布。这种先进的实时园艺照明系统将由检测植物和环境因素的生理标记的传感器和调整输出的人工智能算法组成。虽然存在实时优化系统的底层技术,但实施和培训需要进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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