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Fibre Bragg Grating-Based Acoustic Sensor Array for Improved Condition Monitoring of Marine Lifting Surfaces

机译:基于光纤布拉格光栅的声传感器阵列,用于改善船舶起重表面的状况

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摘要

This paper discusses a novel approach to monitor marine lifting surface conditions through using arrays of Fibre Bragg Grating (FBG)-based acoustic sensors in a marine rudder. Results from these optical sensor arrays are then cross compared with those from conventional piezoelectric (PZT) sensors. A successful proof-of-concept evaluation of the optical sensor approach was, however, first undertaken by using cascaded FBGs integrated into a glass plate, monitoring the response to dropping a standard metal ball at different locations. Data obtained were compared with colocated conventional PZT sensors acoustic sensors for comparison using triangulation to determine the location of the excitation source (a sonotrode). The results obtained verify the excellent performance of the FBG-based sensors due to the excellent agreement between these different sensor types. This gives confidence to the next-stage to scale-up the FBG sensor arrays for other marine structures, with early identification of the initiation of cavitation erosion an important priority for better operational reliability and scheduling of maintenance of marine vessels.
机译:本文讨论了一种通过在船舵中使用基于光纤光栅(FBG)的声传感器阵列来监视船上起重表面状况的新颖方法。然后将这些光学传感器阵列的结果与常规压电(PZT)传感器的结果进行交叉比较。但是,首先通过使用集成在玻璃板上的级联FBG来成功进行光学传感器方法的概念验证评估,该FBG监视对在不同位置掉落标准金属球的响应。将获得的数据与并置的常规PZT传感器和声传感器进行比较,以便使用三角测量法进行比较,以确定激发源(超声波发生器)的位置。由于这些不同传感器类型之间的出色一致性,所获得的结果证明了基于FBG的传感器的出色性能。这为下一阶段扩大用于其他海洋结构的FBG传感器阵列提供了信心,尽早识别空化侵蚀是提高操作可靠性和维护船舶时间表的重要优先事项。

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