FDA雷达目标反射率表征

R. Gui, Wen-qin Wang, H. So, Can Cui
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引用次数: 1

摘要

作为一种新兴的阵列处理技术,变频阵列(FDA)与传统相控阵的不同之处在于它在阵列元素之间采用频率增量。频率增量的使用为FDA提供了一个与联合距离角相关的阵列因子,在联合距离角目标定位和距离相关干扰/杂波抑制中有着广泛的应用。在公开文献中,对于FDA信号建模,通常假设远场理想的点状目标。然而,对于更现实的目标,这些目标不是理想的点状目标,甚至在距离和方位角上都有扩展,FDA雷达的反射率特性还没有报道。本文针对一般目标建立了FDA雷达回波信号模型,并对回波信号幅度进行了统计分析。更具体地说,我们揭示了由于使用频率增量而导致的不同FDA元件之间的幅度去相关特性,这为频率增量设计提供了有用的见解。数值结果验证了目标反射率特性分析的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Target Reflectivity Characterization for FDA Radar
As an emerging array processing technique, frequency diverse array (FDA) differs from conventional phased-array in that it employs a frequency increment across the array elements. The use of frequency increment provides FDA with an array factor with joint range-angle dependency, which finds wide applications in joint range-angle target localization and range-dependent interference/clutter suppression. In the open literature, an ideal point-like target in far field is generally assumed for FDA signal modelling. However, the reflectivity characterization for more realistic targets, which are not ideally point-like and even extended in range and azimuth angle, has not been reported for FDA radar. In this paper, we establish an echo signal model of FDA radar for a general target, and then analyze the statistics of the echo signal amplitude. More specifically, we reveal the amplitude decorrelation property between different FDA elements due to the use of frequency increment, which provides useful insight into frequency increment design. The target reflectivity characteristic analysis is validated by numerical results.
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