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Fundamental radar properties: hidden variables in space-time

机译:雷达基本特性:时空中的隐藏变量

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摘要

A derivation of the properties of pulsed radiative imaging systems is presented with examples drawn from conventional, synthetic aperture, and interferometric radar. A geometric construction of the space and time components of a radar observation yields a simple underlying structural equivalence among many of the properties of radar, including resolution, range ambiguity, azimuth aliasing, signal strength, speckle, layover, Doppler shifts, obliquity and slant range resolution, finite antenna size, atmospheric delays, and beam- and pulse-limited configurations. The same simple structure is shown to account for many interferometric properties of radar: height resolution, image decorrelation, surface velocity detection, and surface deformation measurement. What emerges is a simple, unified description of the complex phenomena of radar observations. The formulation comes from fundamental physical concepts in relativistic field theory, of which the essential elements are presented. In the terminology of physics, radar properties are projections of hidden variables—curved worldlines from a broken symmetry in Minkowski space-time—onto a time-serial receiver.
机译:通过从常规,合成孔径和干涉雷达中提取的示例,介绍了脉冲辐射成像系统的特性。雷达观测的时空分量的几何构造在雷达的许多特性之间产生了简单的潜在结构等效性,包括分辨率,范围模糊度,方位混叠,信号强度,散斑,中途停留,多普勒频移,倾斜和倾斜范围分辨率,有限的天线尺寸,大气延迟以及波束和脉冲限制的配置。示出了相同的简单结构以说明雷达的许多干涉特性:高度分辨率,图像去相关,表面速度检测和表面变形测量。出现的是对雷达观测复杂现象的简单统一描述。该表述来自相对论领域理论中的基本物理概念,其中提出了基本要素。在物理学术语中,雷达属性是隐藏变量(从Minkowski时空破碎的对称性弯曲的世界线)到时间序列接收器的投影。

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