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Three-dimensional analysis of moving target radar signals: methods and implications for ATR and feature-aided tracking

机译:移动目标雷达信号的三维分析:ATR和特征辅助跟踪的方法和含义

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Like the hypothetical shadow watchers of Plato's cave, ATR researchers have spent years in the study of one and two- dimensional signals, collected from three dimensional targets. Three-dimensional geometric invariance theory of radar returns from moving targets gives us a new opportunity to escape the study of two-dimensional information which is present, with probability one, in the signals from any randomly moving target. Target recognition for moving targets is fundamentally harder than for stationary targets, if one remains in a two- dimensional paradigm. Viewing geometry calculations based on sensor flight lines become false, due to uncontrolled target rotations. Three-dimensional analysis shows that even the most optimal purely two-dimensional approach will generically construct false target measurements and distorted target images. But the geometric facts also show that all types of three-dimensional Euclidean invariants, such as true (not projected) lengths, surface areas, angles, and volumes of target components can be extracted from moving target data. These facts have profound implications for target recognition, and for the dynamic tracking of target movements, allowing target signals to be correlated by comparing fundamental three-dimensional invariants, which are not confounded by changing illumination directions.
机译:就像柏拉图洞穴的假设影子观察者一样,ATR研究人员在从三维目标收集的一个和二维信号的研究中花了多年。从移动目标的雷达返回的三维几何不变理论为我们提供了一种逃避来自来自任何随机移动目标的信号的二维信息的研究的新机会。如果一个人保持在二维范式中,目标识别从根本上难以比静止目标更难。根据不受控制的目标旋转,基于传感器飞行线的几何计算变为假。三维分析表明,即使是最优化的纯粹二维方法也将仿旧地构建假目标测量和扭曲的目标图像。但是,几何事实还表明,可以从移动目标数据中提取所有类型的三维欧几里德不变量,例如真正的(未投影)长度,表面积,角度和卷的目标组件。这些事实对目标识别具有深远的影响,并且对于目标运动的动态跟踪,允许通过比较基本的三维不变性来相关的目标信号,这不会通过改变照明方向而被混淆。

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