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首页> 外文期刊>Applied optics >PRECISION POINTING AND TRACKING THROUGH RANDOM MEDIA BY EXPLOITATION OF THE ENHANCED BACKSCATTER PHENOMENON
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PRECISION POINTING AND TRACKING THROUGH RANDOM MEDIA BY EXPLOITATION OF THE ENHANCED BACKSCATTER PHENOMENON

机译:利用增强的后向散射现象精确定位和跟踪随机介质

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摘要

The active illumination of a target through a turbulent medium with a monostatic transmitter-receiver results in a naturally occurring conjugate wave caused by reciprocal scattering paths that experience identical phase variations. This reciprocal path-scattering phenomenon produces an enhanced backscatter in the retroverse direction (precisely along the boresight of the pointing telescope). A dual aperture causes this intensity enhancement to take the form of Young's interference fringes. Interference fringes produced by the reciprocal path-scattering phenomenon are temporally stable even in the presence of time-varying turbulence. Choosing the width-to-separation ratio of the dual apertures appropriately and utilizing orthogonal polarizations to suppress the time-varying common-path scattered radiation allow one to achieve interferometric sensitivity in pointing accuracy through a random medium or turbulent atmosphere. Computer simulations are compared with laboratory experimental data. This new precision pointing and tracking technique has potential applications in ground-to-space laser communications, laser power beaming to satellites, and theater missile defense scenarios. (C) 1996 Optical Society of America [References: 27]
机译:通过湍流介质对目标物进行主动照明,利用单静态发射器-接收器,会产生自然散射的共轭波,该共轭波是由经历相同相位变化的相互散射路径引起的。这种相互的路径散射现象在逆向方向(精确地沿指向望远镜的视轴)产生了增强的反向散射。双孔使强度增强采取杨氏干涉条纹的形式。即使在时变湍流的存在下,由相互的路径散射现象产生的干涉条纹在时间上也是稳定的。适当地选择双孔的宽度与间隔比,并利用正交极化来抑制随时间变化的公共路径散射辐射,可以使人们通过随机介质或湍流环境实现指向精度的干涉灵敏度。将计算机模拟与实验室实验数据进行比较。这种新的精确指向和跟踪技术在地对空激光通信,向卫星发射激光功率以及战区导弹防御场景中具有潜在的应用。 (C)1996年美国眼镜学会[参考文献:27]

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