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RCS measurement accuracy in the U/VHF range: Diagnosis for target positioning error and improvement of the procedure

机译:U / VHF范围内的RCS测量精度:目标定位误差的诊断和程序的改进

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Indoor Radar Cross Section (RCS) measurements suffer from measurement uncertainties. These uncertainties can be exhibited when comparing the computed RCS and the measured data of a canonical target (for example a PEC sphere). The measurement uncertainties mainly come from the defaults of the illumination, and the response of the environment. However, the location of the theoretical center of rotation of the target versus the actual center of rotation of the positioning system also accounts for the measurement accuracy. A diagnosis method has to be implemented on the positioning system, for example after a maintenance operation. Positioning of the target cannot be based on the analysis of the RCS of the target in the U/VHF range (e.g. exploiting symmetries), because the RCS varies slowly with the observation angle. Consequently, a hybrid method, based on both laser tracker and RCS measurements is described in this paper. In order to illustrate the contribution of this method, the RCS of a 2 meter long perfectly conducting cylinder has been measured.
机译:室内雷达横截面(RCS)测量存在测量不确定性。当比较计算的RCS和规范目标(例如PEC球)的测量数据时,可能会表现出这些不确定性。测量不确定度主要来自照明的默认设置以及环境的响应。然而,目标的理论旋转中心相对于定位系统的实际旋转中心的位置也说明了测量精度。例如在维护操作之后,必须在定位系统上实施诊断方法。目标的定位不能基于对目标RCS在U / VHF范围内的分析(例如,利用对称性),因为RCS随观察角的变化缓慢。因此,本文介绍了一种基于激光跟踪仪和RCS测量的混合方法。为了说明此方法的作用,已测量了一个2米长的完全导电圆柱体的RCS。

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