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Evaluation of techniques to model bend loss in multimode fibers for endoscopic application

机译:用于内窥镜应用的多模光纤弯曲损耗建模技术的评估

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摘要

Bend loss from optical fibers can have positive applications, which need to be characterized and related to fiber curvature in a systematic approach to be useful. One potential application for optical fibers is a shape sensor for tracking flexible bodies in remote access environments, such as in endoscopy or boroscopy. We conducted a review of bend-loss characterization and evaluated several methods for characterizing bend loss in multimode optical fibers for an endoscopic shape-tracking application. Specifically, closed-form equation-based methods and numerical simulations were examined. Beam propagation method (BPM) simulations were determined to be the most applicable characterization tool. Results from simulations using BPM software were compared to experimentally obtained data. BPM simulation was sufficiently accurate for modeling 50 (mu)m fibers but impractical for larger, multimode fibers.
机译:光纤的弯曲损耗可能具有积极的应用,需要加以表征并以有用的系统方法与光纤曲率相关。光纤的一种潜在应用是一种形状传感器,用于在远程访问环境(例如内窥镜或硼镜)中跟踪柔性体。我们对弯曲损耗特性进行了综述,并评估了用于表征内窥镜形状跟踪应用的多模光纤中弯曲损耗的几种方法。具体来说,研究了基于闭式方程的方法和数值模拟。光束传播方法(BPM)模拟被确定为最适用的表征工具。使用BPM软件的模拟结果与实验获得的数据进行了比较。 BPM模拟对于50μm光纤的建模足够准确,但对于较大的多模光纤则不切实际。

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