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Performance of the Large-Scale Adaptive Array Antennas in the Presence of Mutual Coupling

机译:相互耦合作用下大型自适应阵列天线的性能

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In this paper, the performance of the large-scale adaptive array antennas in the presence of mutual coupling is explored. An expression for the output signal-to-interference-noise ratio (SINR) of the adaptive array in the presence of strong interference signals, taking into account the mutual coupling between the array elements, is derived. A low-complexity antenna selection algorithm is then proposed to select the optimal subset until the suitable performance is obtained with condition that the spacing between adjacent two antennas is fixed. The combined effect of reducing the distance between the antenna elements with increasing the number of elements in a very limited physical space is also investigated. The antenna array consisting of dipole antennas placed side by side in a linear pattern is assumed. The convergence speed of the adaptive algorithm by bounding and estimating the eigenvalues of its signal covariance matrix in the presence of the mutual coupling is further evaluated. Some novel theoretical study which may be very valuable for the actual deployment of the large-scale adaptive array antennas is made in comparison with previous studies. The theoretical analysis and simulation results show somewhat surprising results showing how the interelement spacing and the number of receiver antennas affect the performance of the large-scale adaptive array antennas with mutual coupling.
机译:本文研究了存在互耦的大型自适应阵列天线的性能。考虑到阵列元件之间的相互耦合,得出在存在强干扰信号的情况下自适应阵列的输出信噪比(SINR)的表达式。然后提出了一种低复杂度的天线选择算法,以选择最佳子集,直到在相邻两个天线之间的间隔固定的条件下获得合适的性能为止。还研究了在非常有限的物理空间中减少天线元件之间的距离并增加元件数量的综合效果。假设天线阵列由以线性模式并排放置的偶极天线组成。通过在相互耦合的情况下对信号协方差矩阵的特征值进行有界和估计,可以进一步评估自适应算法的收敛速度。与以前的研究相比,进行了一些新颖的理论研究,这些研究对于大规模自适应阵列天线的实际部署可能非常有价值。理论分析和仿真结果显示出一些令人惊讶的结果,表明元素间的间距和接收天线的数量如何影响具有相互耦合的大规模自适应阵列天线的性能。

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