Laser & Optoelectronics Progress, Volume. 56, Issue 20, 203301(2019)
Flicker of Electric Light Sources Based on Spectral Analysis
[2] Huang J, Wu X C[J]. LED lighting product flicker risk monitoringChina Light & Lighting, 2018, 41-45.
[5] Gutierrez J J, Saiz P, Azcarate I et al. Sensitivity of modern lighting technologies at varying flicker severity levels[J]. International Journal of Electrical Power & Energy Systems, 92, 34-41(2017).
[6] Ni W[J]. The latest international standardization progress on flicker and stroboscopic effectChina Light & Lighting, 2018, 21-28.
[7] Yoshimoto S, Garcia J, Jiang F et al. Visual discomfort and flicker[J]. Vision Research, 138, 18-28(2017).
[8] Lu H J, Chang G W, Su H J. A new method for flicker severity forecast. [C]//2013 IEEE Power & Energy Society General Meeting, July 21-25, 2013, Vancouver, BC, Canada. New York: IEEE, 13932999(2013).
[12] Albistur C, Aravena P, Morán L et al. A simple predictive method to estimate flicker. [C]//2013 IEEE Industry Applications Society Annual Meeting, October 6-11, 2013, Lake Buena Vista, FL, USA. New York: IEEE, 14318138(2013).
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Juemin Wang, Wenzi Zhao, Fan Yang. Flicker of Electric Light Sources Based on Spectral Analysis[J]. Laser & Optoelectronics Progress, 2019, 56(20): 203301
Category: Vision, Color, and Visual Optics
Received: Oct. 29, 2018
Accepted: Jan. 7, 2019
Published Online: Oct. 22, 2019
The Author Email: Juemin Wang (298836058@qq.com)