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Shaped-Beam Circularly-Polarized Practical Antenna Array for Land Imaging SAR Systems

机译:用于陆地成像SAR系统的形状光束圆极化实用天线阵列

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A planar array of M x N circularly polarized microstrip patch antennas is proposed for high resolution land-imaging applications using an airborne side-looking Synthetic Aperture Radar (SAR) systems. The microstrip patch is designed to produce either right-hand or left-hand circular polarization. The planar array is designed to produce a circularly polarized three-dimensional beam of cosecant-squared shape in the range direction and uniform shape in the azimuth direction. The mutual coupling between the adjacent patches in the proposed array is studied for the assessment of the final array design and is shown to have no bad effects on the resulting beam shape or the array performance. A computationally efficient Particle Swarm Optimization (PSO) algorithm is developed and applied to find the amplitude and phase distributions of the feeding voltages over the planar array elements required to produce the desired radiation patterns. This technique is achieved by developing a fast algorithm to extend the amplitudes and phases calculated for M-element and N-element linear arrays to be applied to the elements of a two-dimensional M x N planar array without the need to apply the PSO to calculate the amplitudes and phases for the entire elements of the planar array. A perfect three-dimensional pattern with the desired shapes in both azimuth and range directions is achieved. The input impedance, the axial ratio and the shapes of the radiation patterns produced by the proposed antenna array are investigated and shown to be satisfactory over the frequency band of 3.91 - 4.11 GHz.
机译:建议使用空气侧面看合成孔径雷达(SAR)系统的高分辨率陆地成像应用的平面阵列M X N圆极化微带贴片天线。微带贴片旨在产生右手或左手圆极化。平面阵列被设计成在方向方向和方位方向上的均匀形状和均匀的形状产生圆偏振的三维横束。研究了所提出的阵列中的相邻贴片之间的相互耦合,用于评估最终阵列设计,并且显示对所得到的梁形状或阵列性能没有不良影响。开发并应用了计算上有效的粒子群优化(PSO)算法,以找到产生所需辐射图案所需的平面阵列元件的馈电电压的幅度和相位分布。通过开发快速算法来实现该技术,以扩展为M元素和N元件线性阵列计算的幅度和相位,以应用于二维M×N平面阵列的元件而不需要将PSO应用于计算平面阵列的整个元件的幅度和阶段。实现了具有方位角和范围方向中所需形状的完美三维图案。研究了由所提出的天线阵列产生的辐射图案的输入阻抗,轴向比和形状在3.91-4.11GHz的频带上令人满意。

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