针对直下式LED平板灯厚度大、光源密度大的缺点,设计了一种带有圆锥台光学元件的超薄直下式LED平板灯,利用漫反射背板和反光圆锥台结构增加LED的混光距离,提高平板灯均匀度.应用划分单元的思想,以一个六角形光源为单元进行研究,采用Taguchi实验方法设计正交试验组并借助Tracepro软件仿真;考量六角形光源的圆锥台元件上下表面半径、厚度、距LED高度以及LED间距5个因子对该灯具均匀度和光效率的影响,并运用ANOVA理论分析出因子对品质的影响程度,进而优化灯具的各项结构参量,最终设计出一款厚度仅15 m
Steady-state diffuse reflectance based on P3 approximation is studied at short source-detector separations. In many practical applications, we can only measure the diffuse reflectance light close to the source, and attempt to derive the optical parameters
A grating-coupled surface plasmon resonance sensor based on bilayer aluminum nanowire arrays is fabricated by laser interference lithography. The device presents impressive reflective sharp peaks by lateral surface plasmon resonances even for aluminum thi
In this study, we propose an effective method for the fabrication of annulus micro-/nanostructures by a femtosecond laser doughnut beam. Compared with the traditional Bessel annulus beam shaping system, this method greatly compresses the light propagation