KAT-7提升管电缆扫描过程中光纤弯曲引起的双折射和偏振波动

H. Kourouma, E. Rotich, R. Gamatham, A. Leitch, T. Gibbon, R. Siebrits, R. Julie, F. Kapp
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摘要

研究了光纤弯曲对KAT-7碟形天线提升电缆偏振模色散(PMD)和偏振态(SOP)的影响。天线提升线是从天线底座延伸到天线焦点的光缆。在扫描天线时,每个天线的提升电缆都受到环境变化和光纤运动引起的任何物理变化的影响。为了模拟这一点,我们研究了光纤弯曲的影响,将提升电缆插入弯曲夹具中,以模拟天线扫描运动。测量表明,差分群延迟(DGD)值在回圈配置中保持在10 fs以下,在弯曲夹具中光纤放置的直通配置中保持在6fs以下。为了本文的目的,PMD和SOP测量是用一个单一的变化元素作为被测光纤的弯曲量进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Birefringence and polarization fluctuations as a result of optical fibre bending during scanning of a KAT-7 riser cable
We evaluate the effects of optical fibre bending on polarization mode dispersion (PMD) and states of polarization (SOP) for a KAT-7 dish antenna riser cable. The antenna riser cable is the optical cable extending from the pedestal to the focus of the antenna. The riser cable for each antenna is subjected to environmental variations and to any physical variation caused by the motion of the fibre while the antenna is being scanned. To emulate this, we have investigated the effects of optical fibre bending with a riser cable inserted in a bending jig built to simulate antenna scanning movements. Measurements have shown that Differential Group Delay (DGD) values remain below 10 fs in the loop back configuration and below 6fs in the straight through configuration of the optical fibre placement in the bending jig. For the purpose of this paper, PMD and SOP measurements were made with a single varying element being the amount of bending enforced onto the optical fibres under test.
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