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Miniature fiber optic towed array for AUV applications

机译:用于AUV应用的微型光纤牵引阵列

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The towed array sensor fit is a real challenge in AUVs due to its space constraints. Only miniature arrays are possible, that too with minimal length. The major components needed for a compatible array are the miniature hydrophones, with less h/w components and minimal cabling & connectors, thus achieving a miniature towed array. The fully electrically passive nature of fiber optic (FO) arrays where sensors can be remotely located through a fiber optic cable, without electrical power, is well suited for towed array sonar applications. This paper aims at the design of miniature mandrel FO hydrophones, its interrogation method and the ultra thin towed array. Considering the hydrostatic pressure tolerance at water depths, a composite mandrel with metal base and foaming layer is proposed for a miniature mandrel FO hydrophone. Small diameter fiber and fiber bragg grating written on to the fiber through the coating eliminates couplers and mirrors thus reducing the components are proposed. An array design with 16 hydrophones using path-matched differential interferometry (PMDI) scheme based on heterodyne interrogator technique is used.
机译:由于其空间限制,牵引阵列传感器拟合是AUV中的真正挑战。只有微型阵列也是可能的,这也是最小的长度。兼容阵列所需的主要组件是微型流水声,具有较少的H / W部件和最小电缆和连接器,从而实现了微型牵引阵列。光纤(FO)阵列的完全电气自由性,其中传感器可以远程通过光纤电缆远程定位,没有电力,非常适合牵引阵列声纳应用。本文旨在设计微型心轴FO流水声,其询问方法和超薄牵引阵列。考虑到水深的静压耐受性,提出了一种具有金属碱和发泡层的复合心轴,用于微型心轴FO水晶酮。通过涂层写入纤维的小直径纤维和光纤布拉格光栅消除了耦合器和反射镜,从而提出了减少组件。使用使用基于外差询问技术的路径匹配的差分干涉测量法(PMDI)方案具有16个水电图的阵列设计。

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