Chen Yung-Chuan
Department of Vehicle Engineering, National Pingtung University of Science and Technology, Taiwan.
Appl Opt. 2007 Jul 20;46(21):4570-8. doi: 10.1364/ao.46.004570.
This study performs experimental and numerical investigations into the power losses induced in bent, elongated polymer optical fibers (POFs). The theoretical analysis is based on a three-dimensional elastic-plastic finite-element model and makes the assumption of a planar waveguide. The finite-element model is used to calculate the deformation of the elongated POFs such that the power loss can be analytically derived. The effect of bending on the power loss is examined by considering seven different bend radii ranging from 10 to 50 mm. The results show that bending and elongation have a significant effect on the power loss in POFs. The contribution of skew rays to the overall power loss in bent, elongated POFs is not obvious at large radii of curvature but becomes more significant as the radius is reduced.
本研究对弯曲的细长聚合物光纤(POF)中产生的功率损耗进行了实验和数值研究。理论分析基于三维弹塑性有限元模型,并假设为平面波导。有限元模型用于计算细长POF的变形,从而可以解析得出功率损耗。通过考虑从10到50毫米的七个不同弯曲半径来研究弯曲对功率损耗的影响。结果表明,弯曲和伸长对POF中的功率损耗有显著影响。在大曲率半径下,倾斜光线对弯曲的细长POF中总功率损耗的贡献不明显,但随着半径减小而变得更加显著。