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Effects of spectral parameters on the light properties of red-green-blue white light-emitting diodes

机译:光谱参数对红绿蓝白光发光二极管光性能的影响

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摘要

Red-green-blue white light-emitting diodes (RGB-WLEDs) have great potential as commercial solid-state lighting devices, as well as visible light communication because of their high color-rendering index (CRI) and high response frequency. The quality of light of an RGB-WLED strongly depends on its spectral parameters. In this study, we fabricated RGB-WLEDs with red, blue, and green LEDs and measured the spectral power distribution (SPD). The experimental SPD is consistent with the calculated spectrum. We also measured the SPDs of LEDs with different peak wavelengths and extracted the spectral parameters, which were then used for modeling. We studied the effect of the wavelength and the full width at half-maximum (FWHM) on both the color rendering index and the luminous efficiency (LE) of the RGB-WLED using simulations. We find that the LE improves as the wavelength of the blue LED increases and the wavelength of the red LED decreases. When the wavelength of the green LED increases, the LE increases first, but later decreases. The CRI of the RGB-WLED increases with the wavelengths of the red, blue, and green LEDs first, but then decreases. The optimal wavelengths and FWHMs for maximum color-rendering and LE of the blue, green, and red LEDs are 466, 536, 606 nm; and 26.0, 34.0, and 19.5 nm, respectively. (c) 2016 Optical Society of America
机译:红绿蓝白光发光二极管(RGB-WLED)由于其高显色指数(CRI)和高响应频率而具有巨大的潜力,可作为商用固态照明设备以及可见光通信。 RGB-WLED的光质量很大程度上取决于其光谱参数。在这项研究中,我们用红色,蓝色和绿色的LED制造了RGB-WLED,并测量了光谱功率分布(SPD)。实验的SPD与计算的光谱一致。我们还测量了具有不同峰值波长的LED的SPD,并提取了光谱参数,然后将其用于建模。我们使用模拟研究了波长和半高全宽(FWHM)对RGB-WLED的显色指数和发光效率(LE)的影响。我们发现LE随蓝色LED的波长增加和红色LED的波长减小而提高。当绿色LED的波长增加时,LE会先增加,然后再减少。 RGB-WLED的CRI首先随着红色,蓝色和绿色LED的波长而增加,然后降低。蓝色,绿色和红色LED的最大显色性和LE的最佳波长和FWHM为466、536、606 nm。分别为26.0、34.0和19.5 nm。 (c)2016年美国眼镜学会

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