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Optimal 3D beam forming

机译:最佳3D波束成型

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摘要

A beam propagating in free space is exposed to the laws of diffraction, which tend to deform the wave front. Hence, 3D beam forming is a very applicable task. For instance it may be useful in designing a special beam to be used for scanning purposes, beam forming for optical communication modules and 3D beam forming as a tool to exceed system's resolving power. There are several techniques, which allow obtaining a reduced sensitivity to diffraction in a pre- determined region of propagation. In this paper a novel optimal technique is suggested. Using the calculus of variation method we derive an analytic expression for an optimal filter in the mean square error sense, to obtain a 3D beam forming, which is as close as possible to the desired 3D distribution. We applied the proposed method for obtaining a scanning beam with improved performances. The suggested approach was tested in computer simulations as well as in optical experiments and was proven to deliver improved performance. Thus one can obtain an extended working region using the resulting beam with confined lateral spread.
机译:在自由空间中传播的光束暴露于衍射规律,这倾向于使波前变形。因此,3D波束形成是一个非常适用的任务。例如,它可以是设计用于设计用于扫描目的的特殊光束,光束形成用于光学通信模块和3D波束形成以超过系统的解析功率的工具。存在若干技术,其允许在预定的传播区域中获得对衍射的降低的敏感性。在本文中,提出了一种新颖的最佳技术。使用变化方法的微积分我们在均方误差意义上得出最佳滤波器的分析表达式,以获得3D波束形成,其尽可能接近所需的3D分布。我们应用了具有改进性能的扫描光束的所提出的方法。建议的方法在计算机模拟以及光学实验中进行了测试,并证明了提高性能。因此,可以使用所得梁获得延伸的工作区,其具有狭窄的横向展开。

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