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Integration of a Laser Doppler Vibrometer and Adaptive Optics system for acoustic-optical detection in the presence of random water wave distortions

机译:激光多普勒测振仪和自适应光学系统的集成,用于在随机水波失真的情况下进行声光检测

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A new technique has been developed for improving the Signal-to-Noise Ratio (SNR) of underwater acoustic signals measured above the water's surface. This technique uses a Laser Doppler Vibrometer (LDV) and an Adaptive Optics (AO) system (consisting of a fast steering mirror, deformable mirror, and Shack-Hartmann Wavefront Sensor) for mitigating the effect of surface water distortions encountered while remotely recording underwater acoustic signals. The LDV is used to perform non-contact vibration measurements of a surface via a two beam laser interferometer. We have demonstrated the feasibility of this technique to overcome water distortions artificially generated on the surface of the water in a laboratory tank. In this setup, the LDV beam penetrates the surface of the water and travels down to be reflected off a submerged acoustic transducer. The reflected or returned beam is then recorded by the LDV as a vibration wave measurement. The LDV extracts the acoustic wave information while the AO mitigates the water surface distortions, increasing the overall SNR. The AO system records the Strehl ratio, which is a measure of the quality of optical image formation. In a perfect optical system the Strehl ratio is unity, however realistic systems with imperfections have Strehl ratios below one. The operation of the AO control system in open-loop and closed-loop configurations demonstrates the utility of the AO-based LDV for many applications.
机译:已经开发出一种新技术,用于改善在水面以上测量的水下声信号的信噪比(SNR)。该技术使用激光多普勒振动计(LDV)和自适应光学(AO)系统(由快速转向镜,可变形镜和Shack-Hartmann波前传感器组成)来减轻远程记录水下声波时遇到的地表水变形的影响信号。 LDV用于通过两束激光干涉仪执行表面的非接触式振动测量。我们已经证明了该技术解决克服实验室水箱中水面上人为产生的水变形的可行性。在这种设置下,LDV光束会穿透水的表面并向下传播,从而被水下声换能器反射。然后,LDV将反射或返回的光束记录为振动波测量值。 LDV提取声波信息,而AO减轻水面失真,从而提高整体SNR。 AO系统记录Strehl比率,这是光学成像质量的度量。在理想的光学系统中,斯特列尔比是统一的,但是具有缺陷的实际系统的斯特列尔比小于1。 AO控制系统在开环和闭环配置中的运行证明了基于AO的LDV在许多应用中的实用性。

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