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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Beampattern Synthesis for Linear and Planar Arrays With Antenna Selection by Convex Optimization
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Beampattern Synthesis for Linear and Planar Arrays With Antenna Selection by Convex Optimization

机译:凸优化选择天线的线性和平面阵列的波束方向图综合。

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A convex optimization based beampattern synthesis method with antenna selection is proposed for linear and planar arrays. Conjugate symmetric beamforming weights are used so that the upper and non-convex lower bound constraints on the beampattern can be convex. Thus, a mainlobe of an arbitrary beamwidth and response ripple can be obtained. This method can achieve completely arbitrary sidelobe levels. By minimizing a re-weighted objective function based on the magnitudes of the elements in the beamforming weight vector iteratively, the proposed method selects certain antennas in an array to satisfy the prescribed beampattern specifications precisely. Interestingly, a sparse array with fewer antennas (compared to other methods) is produced. This method can design non-uniformly spaced arrays with inter-element spacings larger than one half-wavelength, without the appearance of grating lobes in the resulting beampattern. Simulations are shown using arrays of up to a few hundred antennas to illustrate the practicality of the proposed method.
机译:针对线性和平面阵列,提出了一种基于凸优化的天线选择的波束方向图综合方法。使用共轭对称波束成形权重,以便波束图上的上下边界约束可以是凸的。因此,可以获得任意波束宽度和响应波纹的主瓣。该方法可以实现完全任意的旁瓣电平。通过基于波束成形权重向量中元素的大小,通过最小化重新加权的目标函数,该方法选择了阵列中的某些天线,以精确地满足规定的波束方向图规范。有趣的是,产生了天线较少的稀疏阵列(与其他方法相比)。该方法可以设计单元间距大于一个半波长的非均匀间隔阵列,而不会在最终的光束图案中出现光栅波瓣。使用多达几百个天线的阵列来显示仿真,以说明所提出方法的实用性。

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