Beam Shaping by Phase-Only Waveform Encoding for Transmitting Array Antennas in Radar Applications

IF 3.5 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Lior Maman;Shlomo Zach;Amir Boag
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引用次数: 0

Abstract

Two beam broadening methods for active electronically scanned array (AESA) antennas with uniform amplitude excitation are proposed and compared: phase tapering optimization (PTO) and a novel time-varying phase tapering (TPT). The PTO is a simple and efficient approach assuming continuous polynomial phase distribution and requiring optimization of only few parameters. The TPT is valid mainly for radar applications, taking advantage of the fact that radars typically transmit pulse trains for coherent integration. By incorporating waveform encoding and varying the array elements’ phases from pulse to pulse, the TPT achieves effective amplitude tapering, enabling precise beam shaping and the realization of any amplitude aperture illumination using phase-only control, thus providing a method of beam shaping, occasionally with a simple analytic form. The TPT also makes it possible to produce beam shaping with very low side lobe levels in comparison to the PTO. As a preliminary step, the dimensionality of the radiation pattern characterization for all scan directions is reduced from five to only two variables. This is crucial for efficient optimization of the radiation pattern which needs to be evaluated over a judiciously specified two-dimensional domain.
雷达应用中发射阵列天线的纯相位波形编码波束整形
提出并比较了均匀幅值激励有源电子扫描阵列(AESA)天线的两种波束展宽方法:相位衰减优化(PTO)和一种新型时变相位衰减(TPT)。PTO是一种简单有效的方法,它假设连续多项式相位分布,只需要很少的参数优化。TPT主要适用于雷达应用,利用雷达通常发射脉冲序列进行相干积分的事实。通过结合波形编码和改变阵列元素的相位从一个脉冲到另一个脉冲,TPT实现了有效的幅度锥形,实现了精确的波束整形,并实现了使用纯相位控制的任意幅度孔径照明,从而提供了一种波束整形方法,有时具有简单的解析形式。与PTO相比,TPT还可以产生具有非常低的旁瓣电平的光束整形。作为初步步骤,所有扫描方向的辐射模式表征的维度从五个变量减少到只有两个变量。这对于有效优化辐射模式至关重要,需要在明智指定的二维域上进行评估。
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来源期刊
CiteScore
6.50
自引率
12.50%
发文量
90
审稿时长
8 weeks
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