Basic study on novel fiber-optic distributed strain sensor with very high resolution using Rayleigh backscattering
Basic study on novel fiber-optic distributed strain sensor with very high resolution using Rayleigh backscattering
批准号:
14550410
负责人:
KOYAMADA Yahei
金额:
$2.5万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
2002
资助国家:
日本
项目状态:
已结题
起止时间:
2002 至 2005
中文摘要
我们以前提出了一种新的技术,用于测量光纤中的分布应变和温度,具有非常高的测量分辨率。该技术利用了单模光纤瑞利反向散射迹线的锯齿状外观,通过使用具有精确频率控制光源的相干OTDR进行测量。为了明确这种传感技术的潜力,我们进行了数值模拟和实验。实验结果证实了以下基本特性的瑞利后向散射痕迹,是必不可少的,就我们的传感技术。(1)当传感光纤放置在相同的条件(应变和温度)下时,OTDR迹线始终呈现相同的波形。(2)OTDR的波形随应变或温度的变化而变化,但通过调节激光频率可以再现初始波形,数值模拟表明,在40/8 km长的光纤中,可以实现分辨率为0.1/1 με,空间分辨率为1/0.1m的应变分布测量。
英文摘要
We have proposed previously a novel technique for measuring distributed strain and temperature in a fiber with a very high measured resolution. This technique makes use of the jagged appearance of Rayleigh backscatter traces from a single-mode fiber measured by using a coherent OTDR with a precisely frequency-controlled light source. In order to make clear the potential of this sensing technique, we have conducted numerical simulations and experiments. The experimental results confirmed the following basic characteristics of the Rayleigh backscatter traces that are essential as regards our sensing technique.(1) The OTDR trace always exhibits an identical waveform when the sensing fiber is placed under the same conditions (strain and temperature).(2) The waveform of the OTDR trace varies as the strain or the temperature changes, but the initial waveform can be reproduced by adjusting the laser frequency.Our numerical simulations indicated the possibility of measuring strain distribution with a resolution of 0.1/1 με and a spatial resolution of 1/0.1 m for a 40/8 km long fiber.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1093/ietcom/e89-b.5.1722
发表时间:
2006-05-01
期刊:
IEICE TRANSACTIONS ON COMMUNICATIONS
影响因子:
0.7
作者:
[Koyamada, Yahei, Eda, Yousuke, Hogari, Kazuo]
通讯作者:
Hogari, Kazuo
海外基金