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Macro Bending Effect in Optical Fiber Composite Low Voltage Cable

机译:光纤复合低压电缆中的宏弯曲效应

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Smart Grid distribution network comprised of power supply cable as well as two way communication between the customer and grid. This two way communication is carried out by Optical fiber composite low voltage cable (OPLC). In the installation of OPLC cable, the most important factor to be taken care of is the attenuation loss occur in optical unit. In attenuation loss, macro bending is one of the major contributors. Therefore it is necessary to minimize the macro bending loss in signal attenuation while installing the OPLC cable. In this paper, we have studied the macro bending effect in optical fiber unit of optical fiber composite low voltage cable that occurs in handling and installation process of the cable. In the paper, simulation is being done by using COMSOL to measure the attenuation loss in bending the cable at the suggested radius. The experiment is carried out to analyze and investigate the attenuation loss at different bending radius and number of turns. The critical radius and suggested radius for installation have been proposed to keep the attenuation loss below 0.15 dB.
机译:智能电网配电网络由电源电缆组成,以及客户和网格之间的两种方式通信。这两种方式通过光纤复合低压电缆(OPLC)进行。在安装OPLC电缆的安装中,最重要的因素是光学单元的衰减损失。在衰减损失中,宏弯曲是主要贡献者之一。因此,必须在安装OPLC电缆时最小化信号衰减中的宏弯曲损耗。在本文中,我们研究了在电缆的处理和安装过程中发生的光纤复合低压电缆光纤单元中的宏弯曲效果。在本文中,通过使用COMSOL来测量在建议的半径处弯曲电缆的衰减损耗来完成模拟。进行实验以分析和研究不同弯曲半径的衰减损失和匝数。已经提出了用于安装的临界半径和建议的半径以使衰减损耗保持在0.15 dB以下。

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