聚合物光纤在光纤采光系统集光功率中的耦合效率

F. Sulaiman, A. Ahmad, A. Z. Ahmed
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摘要

聚合物或塑料光纤的性能介于传统铜线和玻璃光纤之间。铜线易受电磁干扰。相比之下,塑料光纤不受干扰。与玻璃纤维相比,聚合物光纤(POFs)由于其大直径而更容易连接。来自太阳或光源的光的耦合也非常有效,因为大的NA和大的芯直径。POFs最重要的特性是其芯直径大,约为1毫米至20毫米,而玻璃纤维芯直径为50/spl mu/m或62.5/spl mu/m。如此大的直径使接头更容易对准。在两根纤维之间的连接处,两个芯之间的任何横向不对准都会导致损耗。因此,本文研究了作为自然光源的太阳光与阶跃折射率聚合物光纤的耦合效率,并与玻璃纤维进行了比较,从而为光纤采光系统和光纤装饰照明提供了更大的集光功率。MATLAB仿真分析表明,与阶跃折射率PMMA玻璃光纤相比,阶跃折射率PMMA聚合物光纤的耦合效率和集光功率随着数值孔径的增大而稳步提高,具有更高更好的集光功率。
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Coupling efficiency of polymer optical fiber for light-gathering power in optical fiber daylighting system
Polymer or plastic optical fibers' performance lies somewhere between conventional copper wires and glass optical fibers. Copper wires suffer from electromagnetic interference. By comparison, plastic optical fibers are free from interference. Compared to glass fibers, polymer optical fibers (POFs) are much easier to connect because of their large diameters. Coupling of light from the sun or from a source is also very efficient due to large NA and large core diameter. The most important attribute of POFs is their large core diameters of around 1 mm to 20 mm as compared to glass fibers with cores of 50/spl mu/m or 62.5/spl mu/m. Such a large diameter results in easier alignment at joints. Any transverse misalignment between the two cores across a joint between two fibers leads to a loss. Hence, this paper studies on the coupling efficiency of light from the sun as a natural light source to a step-index polymer optical fibers in comparison to glass fibers that results in larger light-gathering power for optical fiber daylighting system and in fiber decorative lighting. MATLAB simulation analysis shows that the coupling efficiency and light gathering power increases steadily with an increase in numerical aperture of the step-index PMMA polymer optical fiber that has higher and better light gathering power than step-index PMMA glass optical fiber.
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