Analysis of Performance Improvement of Planar Antenna Arrays With Optimized Square Rings for Massive MIMO Applications

J. Mohammed, Abdulrazaq A. Khamees
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Abstract

The power pattern of the conventional fully optimized planar arrays can be properly reshaped according to the required user-defined constraints. However, the practical implementation of such fully optimized large planar arrays is complex and expensive. This paper introduces a new and efficient technique that is capable of providing better performance and almost the same power pattern shapes as that of the conventional fully optimized planar arrays by optimally adjusting the element amplitude and phase excitations of the outer-square rings instead of all elements' excitations. The proposed technique starts with a massive fully planar array then divides it into two contiguous sub-planar arrays which are both symmetric about the original array center. The elements excitation amplitudes or phases of the outer sub-planar array are only adjusted to form the desired power pattern shapes, while the amplitudes or phases of the central sub-planar array elements which have usually higher weights than the outer elements are made constants (i.e., they made ones for the case of amplitude-only control and zeros for the phase-only control). The results demonstrate the capability of the proposed planar array to form the required power patterns with far less number of the adjustable elements.
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分析使用优化方环的平面天线阵列在大规模多输入多输出应用中的性能改进
传统全优化平面阵列的功率模式可根据用户定义的约束条件进行适当调整。然而,这种完全优化的大型平面阵列的实际实现既复杂又昂贵。本文介绍了一种高效的新技术,通过优化调整外方环的元素振幅和相位激励,而不是所有元素的激励,能够提供更好的性能和与传统完全优化平面阵列几乎相同的功率模式形状。所提出的技术从一个大规模的全平面阵列开始,然后将其分为两个连续的子平面阵列,这两个阵列都围绕原阵列中心对称。外围子平面阵列的元素激励振幅或相位只作调整,以形成所需的功率模式形状,而中央子平面阵列元素的振幅或相位(通常比外围元素权重高)则做成常数(即只控制振幅时做 1,只控制相位时做 0)。结果表明,拟议的平面阵列能够以较少的可调元件数量形成所需的功率模式。
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