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配备电子调光功能的金属卤化物灯和高压钠灯的光谱变化

Spectral changes in metal halide and high-pressure sodium lamps equipped with electronic dimming.

作者信息

Bubenheim D L, Sargis R, Wilson D

机构信息

National Aeronautics and Space Administration Ames Research Center, Advanced Life Support Division, Moffett Field, CA 94035, USA.

出版信息

HortScience. 1995 Aug;30(5):1086-9.

PMID:11540960
Abstract

Electronic dimming of high-intensity discharge lamps offers control of photosynthetic photon flux (PPF) but is often characterized as causing significant spectral changes. Growth chambers with 400-W metal halide (MH) and high-pressure sodium (HPS) lamps were equipped with a dimmer system using silicon-controlled rectifiers (SCR) as high-speed switches. Phase control operation turned the line power off for some period of the alternating current cycle. At full power, the electrical input to HPS and MH lamps was 480 W (root mean squared) and could be decreased to 267 W and 428 W, respectively, before the arc was extinguished. Concomitant with this decrease in input power, PPF decreased by 60% in HPS and 50% in MH. The HPS lamp has characteristic spectral peaks at 589 and 595 nm. As power to the HPS lamps was decreased, the 589-nm peak remained constant while the 595-nm peak decreased, equaling the 589-nm peak at 345-W input, and the 589-nm peak was almost absent at 270-W input. The MH lamp has a broader spectral output but also has a peak at 589 nm and another smaller peak at 545 nm. As input power to the MH lamps decreased, the peak at 589 diminished to equal the 545-nm peak. As input power approached 428 W, the 589-nm peak shifted to 570 nm. While the spectrum changed as input power was decreased in the MH and HPS lamps, the phytochrome equilibrium ratio (Pfr : Ptot) remains unchanged for both lamp types.

摘要

高强度气体放电灯的电子调光可控制光合光子通量(PPF),但通常被认为会导致显著的光谱变化。配备400瓦金属卤化物(MH)灯和高压钠(HPS)灯的生长室装有一个调光系统,该系统使用可控硅整流器(SCR)作为高速开关。相位控制操作会在交流电周期的一段时间内切断线路电源。在全功率时,HPS灯和MH灯的电输入为480瓦(均方根),在电弧熄灭前可分别降至267瓦和428瓦。随着输入功率的这种降低,HPS灯的PPF降低了60%,MH灯的PPF降低了50%。HPS灯在589纳米和595纳米处有特征光谱峰。随着HPS灯功率的降低,589纳米的峰保持不变,而595纳米的峰降低,在345瓦输入时与589纳米的峰相等,在270瓦输入时589纳米的峰几乎消失。MH灯的光谱输出更宽,但在589纳米处也有一个峰,在545纳米处有另一个较小的峰。随着MH灯输入功率的降低,589纳米处的峰减小至与545纳米的峰相等。当输入功率接近428瓦时,589纳米的峰移至570纳米。虽然随着MH灯和HPS灯输入功率的降低光谱发生了变化,但两种灯的光敏色素平衡比(Pfr : Ptot)均保持不变。

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