Hetero-core fiber optic binary sensors based on pulse loss change with tandem connection for security network

Y. Arai, M. Nishiyama, Kazuhiro Watanabe
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引用次数: 1

Abstract

A hetero-core fiber optic sensor has the capability of combining sensing and communication signals in a single fiber transmission line and has many advantages for environmental information monitoring such as home-security. This is because its cost-effectiveness due to its temperature independency and intensity based measurement. We have developed a hetero-core fiber optic binary sensor that can be connected in tandem to detect the number of doors and windows that are opened or closed. In this paper, we propose a new improved method for using hetero-core fiber optic binary sensors, which are regarded as binary switches, with tandem connection. A unique pulse loss change enables the connected switch system to identify the states of the switches. As a result, the total optical loss in the transmission line is reduced. Therefore, the number of binary switches connected in tandem can be increased on a single transmission line. The unique pulse peaks in loss can be induced by the flat spring flipping and, in addition, achieved by means of adjusting the position of the flat spring inside the binary switch module. The typical pulse peak and insertion loss of each binary switch are estimated to be changed with ranging from 0.13 to 0.75 dB in positive, from −0.47 to −0.03 dB in negative sides and from 2.23 to 2.61 dB, respectively, with the position of the hetero-core portion within the binary switch module. Two binary switches are successfully demonstrated tandem connected monitoring along a single transmission line by the optical loss change. Results of our experiments show that the number of binary switches connected in tandem can be increased significantly on a single transmission line.
基于脉冲损耗变化串联连接的多芯光纤二进制传感器用于安全网络
异芯光纤传感器具有在单根光纤传输线内将传感和通信信号结合在一起的能力,在家庭安防等环境信息监测中具有许多优点。这是因为它的成本效益,由于其温度的独立性和强度为基础的测量。我们开发了一种异芯光纤二进制传感器,可以串联连接,以检测打开或关闭的门窗数量。在本文中,我们提出了一种新的改进方法来使用异芯光纤二进制传感器,将其视为二进制开关,与串联连接。唯一的脉冲损耗变化使连接的开关系统能够识别开关的状态。因此,降低了传输线中的总光损耗。因此,在一条传输线上串联连接的二进制开关的数量可以增加。损耗中的独特脉冲峰值可以由平弹簧翻转引起,此外,通过调节平弹簧在二进制开关模块内的位置来实现。据估计,随着异芯部分在二进制开关模块中的位置的变化,每个二进制开关的典型脉冲峰值和插入损耗的变化范围分别为正极0.13 ~ 0.75 dB,负极- 0.47 ~ - 0.03 dB和2.23 ~ 2.61 dB。成功地演示了两个二进制开关通过光损耗变化沿一条传输线串联连接监控。实验结果表明,在一条传输线上串联的二进制开关数量可以显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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