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A fast point-cloud computing method based on spatial symmetry of Fresnel field

机译:基于菲涅尔场空间对称性的快速点云计算方法

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Aiming at the great challenge for Computer Generated Hologram (CGH) duo to the production of high spatial-bandwidth product (SBP) is required in the real-time holographic video display systems. The paper is based on point-cloud method and it takes advantage of the propagating reversibility of Fresnel diffraction in the propagating direction and the fringe pattern of a point source, known as Gabor zone plate has spatial symmetry, so it can be used as a basis for fast calculation of diffraction field in CGH. A fast Fresnel CGH method based on the novel look-up table (N-LUT) method is proposed, the principle fringe patterns (PFPs) at the virtual plane is pre-calculated by the acceleration algorithm and be stored. Secondly, the Fresnel diffraction fringe pattern at dummy plane can be obtained. Finally, the Fresnel propagation from dummy plan to hologram plane. The simulation experiments and optical experiments based on Liquid Crystal On Silicon (LCOS) is setup to demonstrate the validity of the proposed method under the premise of ensuring the quality of 3D reconstruction, the method proposed in the paper can be applied to shorten the computational time and improve computational efficiency.
机译:实时全息视频显示系统需要针对计算机生成全息图(CGH)的巨大挑战,以生产高空间带宽乘积(SBP)。本文基于点云方法,利用菲涅耳衍射在传播方向上的传播可逆性和点源的条纹图案(被称为Gabor波带片具有空间对称性),因此可以作为基础用于快速计算CGH中的衍射场。提出了一种基于新型查找表(N-LUT)的快速菲涅耳CGH方法,通过加速算法预先计算并存储了虚拟平面上的主条纹图案(PFP)。其次,可以获得假平面上的菲涅耳衍射条纹图案。最后,菲涅耳从伪平面传播到全息图平面。建立了基于硅上液晶(LCOS)的仿真实验和光学实验,证明了所提方法的有效性,同时保证了3D重建的质量,可以缩短计算时间。并提高计算效率。

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