Optimization of Uniform Amplitude Periodic Linear Phased Arrays for Grating Lobe Reduction

Y. Aslan, Nehir Berk Onat
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Abstract

The optimization of mode excitation coefficients in linear periodic arrays of multi-mode antenna elements is studied for grating lobe reduction. A novel beamforming architecture is proposed with a new optimization problem based on equi-amplitude element excitations for optimal power efficiency. The capabilities of the proposed synthesis approach on suppressing the grating lobe for wide scan angles, and on maintaining the peak gain at the steering angle are analyzed. A 16-element 0.7-wavelength spaced array of dual-mode circular patch antenna elements is used for demonstration purposes. It is shown that a good performance trade-off is achieved when the excitation amplitude of the high order mode is restricted to a sufficiently large value. The ratio of the peak gain outside the main lobe to the gain at the angle of steering is reduced up to about −15 dB and −14 dB for scanning towards 30 and 45 degrees off-broadside, respectively.
均匀振幅周期线性相控阵光栅减瓣优化
研究了多模天线单元线性周期阵列中模式激励系数的优化问题。提出了一种新的波束形成结构,并提出了一种新的基于等幅元激励的优化问题。分析了该方法在宽扫描角下抑制光栅瓣的能力,以及在转向角处保持峰值增益的能力。用于演示目的的16元0.7波长间隔双模圆形贴片天线元件阵列。结果表明,当高阶模式的激励幅值限制在足够大的值时,可以实现良好的性能权衡。主瓣外的峰值增益与转向角的增益之比分别降低到约- 15 dB和- 14 dB,用于偏离舷侧30度和45度的扫描。
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