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Accurate three-dimensional metrology of underwater objects using replayed real images from in-line and off-axis holograms

机译:使用在线和离轴全息图回放的真实图像,对水下物体进行精确的三维度量

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摘要

In many fields of science and engineering it is important to obtain accurate high-resolution images of underwater objects and scenes to allow precision dimensional measurement and inspection. Optical holography enables true three-dimensional images, with a simultaneous high resolution and large depth of field, to be recorded. The technical challenges of recording such holograms, and their subsequent replay in the laboratory, is considerable as there are increased optical aberrations arising from the change in refractive index when an object recorded in water is replayed in air. Our detailed evaluation of these aberrations, and techniques for their compensation, are described. We have demonstrated a resolution of better than 10μm using in-line holography and better than 100μm using off-axis holography in laboratory simulations of underwater scenes. Volumes of water of 2.5 litres (in-line) and up to 100 litres (off-axis) have been recorded. An absolute coordinate accuracy of better than I % for both in-line and off-axis holograms has been achieved. Results are presented on resolution and coordinate accuracy versus distance, replay wavelength, off-axis angle, and holographic plate misalignment. We discuss the concepts with reference to the design of an underwater holographic camera for the recording of marine organisms and the associated replay of the holograms.
机译:在科学和工程的许多领域,获取水下物体和场景的准确高分辨率图像以进行精确的尺寸测量和检查非常重要。光学全息术可以记录真正的三维图像,同时具有高分辨率和大景深。记录这种全息图及其随后在实验室中重放的技术挑战是相当大的,因为当在水中重放记录在水中的物体时,由于折射率变化而引起的光学像差增加。描述了我们对这些像差的详细评估以及其补偿技术。在水下场景的实验室模拟中,我们证明了使用在线全息照相法的分辨率优于10μm,使用离轴全息照相术的分辨率优于100μm。记录了2.5升(直列)和最大100升(离轴)的水量。在线和离轴全息图的绝对坐标精度都优于I%。结果显示在分辨率和坐标精度与距离,重放波长,偏轴角和全息图板未对准方面。我们将参考水下全息相机的设计来讨论这些概念,该相机用于记录海洋生物以及全息图的相关回放。

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