Design of greenhouse monitoring and control system based on LED lighting

Yanyan Li, Pingjuan Niu, Zhengxiao Su
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引用次数: 3

Abstract

LED light source module is developed according to the design of light distribution of RRGB chip based on the demand of plants for light, temperature and humidity. Several light source modules constitute LED array planar light source module. Monitoring and control of the system is realized through the combination of upper computer based on LabVIEW and controller. The controller conducts real-time detection on photon flux density (PFD) of red, green and blue bands, temperature and humidity and displays the detection information on the interface of upper computer. Pulse width modulation (PWM) signal is adjusted dynamically through the controller so as to make PFD value of plants under lighting remain constant, thus realizing intelligent fill lighting of the lighting system in combination with ambient light. Meanwhile, the system also realizes intelligent adjustment of temperature and humidity threshold range. This intelligent fill lighting system meets the requirement of plants for fill lighting environment and greatly saving energies through the setting of different PFD values and temperature and humidity ranges of red, green and blue bands by upper computer and the completion of environmental control by lower computer according to the setting based on different fill lighting demands of different plants or the same plant in different growth stages for PFD and light quality ratio.
基于LED照明的温室监控系统设计
LED光源模块是根据植物对光、温度、湿度的需求,根据RRGB芯片的配光设计开发的。多个光源模块组成LED阵列平面光源模块。通过基于LabVIEW的上位机与控制器的结合,实现了对系统的监控。控制器对红、绿、蓝波段的光子通量密度(PFD)、温度、湿度进行实时检测,并将检测信息显示在上位机界面上。通过控制器动态调节脉宽调制(PWM)信号,使光照下植物的PFD值保持恒定,从而实现照明系统与环境光相结合的智能补光。同时,系统还实现了温湿度阈值范围的智能调节。本智能补光系统通过上位机设置不同的PFD值和红、绿、蓝波段的温湿范围,下位机根据不同植物或同一植物不同生长阶段对PFD和光质比的不同补光需求设置完成环境控制,满足植物对补光环境的要求,大大节约能源。
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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