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Design of artificial climate chamber for screening tea seedlings' optimal light formulations

机译:人工气候室筛选茶叶幼苗最优浅色配方设计

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A mull-channel photon sensor (MPS) capable of measuring Red Photon Flux Density (RPFD), Blue Photon Flux Density (BPFD) and Photosynthetic Photon Flux Density (PPFD) based on silicon photodiodes and filters is designed. At the same time, the FPGA-based environmental control system realizes the closed-loop control of RPFD, BPFD and PPFD by reading the data collected by the MPS that slides up and down according to the height of the canopy of the plant and using the PWM signal to control the LED light board's red and blue channel. Based on the above method, the article completed an Artificial Climate Chamber (ACC) that realizes the automatic regulation of PPFD and RPFD/BPFD (R/B) of plant canopy that are the key parameters for determining the light formulations of plant lighting and environmental parameters including temperature, relative humidity, CO2 concentration, photoperiod etc. M a significantly lower cost, the MPS's photon response curve is close to the ideal value, and the linear response R-2 of the calibration exceeds 0.999. After setting the parameters for 30 s, the RPFD, BPFD and PPFD control error of the ACC are 1.43%, 1.39% and 0.71%, respectively. The paper also used tea seedlings as materials to explore the physiological and biochemical indexes of leaves under different R/B and PPFD. By comparing the biomass accumulation, free amino acid, tea polyphenols, polyphenols / amino acid ratio and other key parameters, PPFD = 100 mu mol.m(-2).s(-1) and R/B = 1/3 is the optimal light formulations for artificial light cultivation of tea seedlings.
机译:设计了能够测量红色光子磁通密度(RPFD),蓝色光子磁通密度(BPFD)和基于硅光电二极管和过滤器的光合光子通量密度(PPFD)的MULL沟道光子传感器(MPS)。同时,基于FPGA的环境控制系统通过读取由植物的顶篷的高度向上和向下滑动的MPS收集的数据来实现RPFD,BPFD和PPFD的闭环控制,并使用PWM信号控制LED灯板的红色和蓝色通道。基于上述方法,本文完成了人工气候室(ACC),实现了植物冠层的PPFD和RPFD / BPFD(R / B)的自动调节,这是确定植物照明和环境的轻型配方的关键参数参数包括温度,相对湿度,CO2浓度,光周期等显着更低的成本,MPS的光子响应曲线接近理想值,并且校准的线性响应R-2超过0.999。设置30秒的参数后,ACC的RPFD,BPFD和PPFD控制误差分别为1.43%,1.39%和0.71%。本文还使用茶幼苗作为材料,以探讨不同R / B和PPFD下叶片的生理生化指标。通过比较生物质积累,游离氨基酸,茶多酚,多酚/氨基酸比和其他关键参数,PPFD = 100 mo mol.m(-2).s(-1)和r / b = 1/3是茶叶人造光栽培的最佳光学配方。

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