New approach to construct freeform surface by numerically differential formulation

  • Tsai Y
  • Chiang M
  • Chang R
  • et al.
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Abstract

We proposed a new design method for single freeform reflective (or refractive) surface tailored to redistribute the radiant flux onto a prescribed illumination pattern. Unlike the conventional optimization approaches based on the grid mapping, in this study we estimated each segmental freeform surface by locally solving a second-order differential equation, which formulates the energy transportation between each domain cell. With finite element method via Hermite element, we validated a series of smooth reflective/refractive surfaces to reallocate the radiant flux from a point source toward a target plane with specific patterns. The proposed technique offers a large flexibility by varying the vectors of each ray with multiple refraction (or reflection), which imposes no restriction on the target distribution, collective solid angle, or even target topography.

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Tsai, Y.-L., Chiang, M.-C., Chang, R., Tien, C.-H., & Wu, C.-T. (2013). New approach to construct freeform surface by numerically differential formulation. Optical Engineering, 53(3), 031307. https://doi.org/10.1117/1.oe.53.3.031307

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