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通过使用新型双环网络拓扑结构提高复用光纤低相干干涉传感器的可靠性。

Improving the reliability of multiplexed fiber optic low-coherence interferometric sensors by use of novel twin-loop network topologies.

作者信息

Yang Jun, Yuan Libo, Jin Wei

机构信息

Photonics Research Center, College of Science, Harbin Engineering University, Harbin 150001, People's Republic of China.

出版信息

Rev Sci Instrum. 2007 May;78(5):055106. doi: 10.1063/1.2735564.

Abstract

Novel twin-loop network topologies for multiplexing fiber optic low-coherence reflectometric sensors are proposed and theoretically analyzed. The sensing fibers are made by connecting segments of standard single-mode fibers with partial reflections at the fiber joints and are completely passive. Absolute length measurement can be made for each segment of the sensing fiber so that strain or temperature distribution along the entire sensing fiber can be derived. It is expected that novel topologies would help as to improve the reliability of the sensor network by providing multiple accesses to each of the sensing segment so that most of the sensing segments can still be interrogated even when one or more point breakages occur along the transmission fibers. A nine-sensor twin-loop sensing network was constructed and experimentally tested by use of a Michelson low-coherence interferometer, and the results obtained agree with our theoretical prediction. The novel network topologies may be used for large-scale smart structure applications where breakages of transmission fibers may occur during the stages of sensor imbedding, installation, and structure-in-service cycles.

摘要

提出并从理论上分析了用于复用光纤低相干反射式传感器的新型双环网络拓扑结构。传感光纤通过在光纤接头处进行部分反射连接标准单模光纤段制成,且完全无源。可以对传感光纤的每一段进行绝对长度测量,从而得出沿整个传感光纤的应变或温度分布。预计新型拓扑结构将有助于提高传感器网络的可靠性,因为它为每个传感段提供了多个接入点,这样即使在传输光纤沿线发生一处或多处断点时,大多数传感段仍可被询问。构建了一个九传感器双环传感网络,并使用迈克尔逊低相干干涉仪进行了实验测试,所得结果与我们的理论预测相符。这种新型网络拓扑结构可用于大规模智能结构应用,在传感器嵌入、安装以及结构服役周期等阶段可能会发生传输光纤断裂的情况。

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