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Damage detection in cable braidings using integrated fiber-optic reflectors

机译:使用集成的光纤反射器检测电缆编织物中的损伤

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摘要

In cable industry, structural health monitoring is becoming more and more important. Of special relevance is the damage detection in cables which supply large excavation equipment like bucket wheel excavators in opencast mining. Here, damage localization is often still carried out manually. With a usual cable length of a few kilometers, this method is inefficient and can lead to unnecessary revenue losses caused by long repair and machine downtime. Because of their electromagnetic immunity, their functionality over long transmission distances, their resistance to difficult environmental conditions, and their comparatively easy integrability, fiberoptic sensors are particularly suitable for detecting damages in this application. Therefore, in this paper, a novel spatially resolving and inexpensive damage detection system based on fiberoptic reflectors is presented. With a physical vapor deposition method, an increased reflectance of the coated single mode fiber ends was achieved. Due to the special integration position of the sensors in the braiding structure of a cable, damage in the jacket area can be detected. Via measurements of the reflected signal intensities, the position of the damage can be resolved over long distances. Furthermore, the sensor arrangement engages only slightly in the manufacturing process of the cable braiding and the cable. The ability of the presented measurement system to perform damage detection independent of the regular power transmission of the cable offers an advantage over standard cable conductor based electrical damage detection techniques.
机译:在电缆行业,结构健康监测变得越来越重要。与电缆的损坏检测特别相关的是电缆,这些电缆为大型采矿设备提供了保障,例如露天采矿中的斗轮挖掘机。在此,损坏定位通常仍是手动进行的。在通常的电缆长度只有几公里的情况下,这种方法效率低下,并可能由于长期维修和机器停机而导致不必要的收入损失。由于它们的电磁抗扰性,在长距离传输中的功能性,对困难的环境条件的抵抗力以及相对容易的可集成性,光纤传感器特别适合于在此应用中检测损坏。因此,本文提出了一种基于光纤反射器的新型空间分辨和廉价的损伤检测系统。使用物理气相沉积方法,可以提高涂覆的单模光纤端部的反射率。由于传感器在电缆的编织结构中的特殊集成位置,因此可以检测到护套区域的损坏。通过测量反射信号强度,可以在长距离上解决损坏的位置。此外,传感器装置在电缆编织物和电缆的制造过程中仅稍微接合。与基于标准电缆导体的电气损坏检测技术相比,所提出的测量系统能够独立于电缆的常规功率传输执行损坏检测的能力提供了一个优势。

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