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Grating-Over-Lens Concentrating Photovoltaic Spectrum Splitting Systems with Volume Holographic Optical Elements

机译:具有体积全息光学元件的光栅过度透镜集中光伏谱分裂系统

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In grating-over-lens spectrum splitting designs, a planar transmission grating is placed at the entrance of a plano-convex lens. Part of the incident solar spectrum is diffracted at 15-30° from normal incidence to the lens. The diffracted spectral range comes to a focus at an off-axis point and the undiffracted spectrum comes to a focus on the optical axis of the lens. Since the diffracted wave is planar and off-axis, the off-axis focal points suffer from aberrations that increase system loss. Field curvature, chromatic and spherical aberrations are compensated using defocusing and a curved focal plane (approximated with each photovoltaic receiver). Coma is corrected by modifying the off-axis wavefront used in constructing the hologram. In this paper, we analyze the use of non-planar transmission gratings recorded using a conjugate object beam to modify the off-axis wavefront. Diverging sources are used as conjugate object and reference beams. The spherical waves are incident at the lens and the grating is recorded at the entrance aperture of the solar concentrator. The on-axis source is adjusted to produce an on-axis planar wavefront at the hologram plane. The off-axis source is approximated to a diffraction limited spot producing a non-planar off-axis wavefront on the hologram plane. Illumination with a planar AMI.5 spectrum reproduces an off-axis diffraction-limited spot on the focal plane. This paper presents ray trace and coupled wave theory simulations used to quantify the reduction in losses achieved with aberration correction.
机译:在光栅过度镜头光谱分离设计中,平面传输光栅放置在平面凸透镜的入口处。入射太阳光谱的一部分在15-30°衍射,从正常入射到透镜。衍射光谱范围在轴轴点处焦点,并且未判断的光谱在镜片的光轴上焦点。由于衍射波是平面和轴外轴,因此偏离轴焦点遭受增加系统损失的像差。使用散焦和弯曲的焦平面(用每个光伏接收器近似)来补偿场曲率,色彩和球形像差。通过修改用于构造全息图的轴外波向量来纠正COMA。在本文中,我们分析了使用共轭物体光束记录的非平面传输光栅的使用来修改轴外波前。发散源用作共轭物体和参考光束。球形波在透镜处入射,并且光栅被记录在太阳能聚光器的入口孔处。调整轴源以在全息图平面上产生轴上平面波前。偏离轴源近似于在全息图平面上产生非平面非轴波前波前的衍射限制点。用平面Ami.5光谱照明再现焦平面上的轴外衍射限制点。本文呈现了光线轨迹和耦合波理论模拟,用于量化畸变校正所实现损耗的降低。

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