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An Interferometric Fiber Optic Hydrophone With Large Upper Limit Of Dynamic Range

机译:动态范围上限较大的干涉式光纤水听器

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Interferometric fiber optic hydrophone based on heterodyne detection is used to measure the missile dropping point in the sea. The signal caused by the missile dropping in the water will be too large to be detected, so it is necessary to boost the upper limit of dynamic range (ULODR) of fiber optic hydrophone. In this article we analysis the factors which influence the ULODR of fiber optic hydrophone based on heterodyne detection, the ULODR is decided by the sampling frequency f_(sam) and the heterodyne frequency Δf. The sampling frequency and the heterodyne frequency should be satisfied with the Nyquist sampling theorem which f_(sam) will be two times larger than Δf, in this condition the ULODR is depended on the heterodyne frequency. In order to enlarge the ULODR, the Nyquist sampling theorem was broken, and we proposed a fiber optic hydrophone which the heterodyne frequency is larger than the sampling frequency. Both the simulation and experiment were done in this paper, the consequences are similar: When the sampling frequency is 100kHz, the ULODR of large heterodyne frequency fiber optic hydrophone is 2.6 times larger than that of the small heterodyne frequency fiber optic hydrophone. As the heterodyne frequency is larger than the sampling frequency, the ULODR is depended on the sampling frequency. If the sampling frequency was set at 2MHz, the ULODR of fiber optic hydrophone based on heterodyne detection will be boosted to 1000rad at 1kHz. and this large heterodyne fiber optic hydrophone can be applied to locate the drop position of the missile in the sea.
机译:基于外差检测的干涉式光纤水听器用于测量海上导弹的落点。导弹掉入水中引起的信号太大,无法检测到,因此有必要提高光纤水听器动态范围(ULODR)的上限。本文基于外差检测分析影响光纤水听器ULODR的因素,ULODR由采样频率f_(sam)和外差频率Δf决定。 f_(sam)将比Δf大两倍的奈奎斯特采样定理应满足采样频率和外差频率,在这种情况下,ULODR取决于外差频率。为了扩大ULODR,打破了Nyquist采样定理,我们提出了一种外差频率大于采样频率的光纤水听器。本文进行了仿真和实验,其结果是相似的:当采样频率为100kHz时,大外差频率水听器的ULODR比小外差频率水听器的ULODR大2.6倍。由于外差频率大于采样频率,因此ULODR取决于采样频率。如果将采样频率设置为2MHz,则基于外差检测的光纤水听器的ULODR将在1kHz时提高到1000rad。这种大型外差式光纤水听器可用于定位导弹在海上的下落位置。

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