大型自适应天线阵的快速互耦补偿算法

V. Zaharov, Ángel Lambertt Lobaina, Jaime L. Rodriguez, Ramon Albandoz Soto
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引用次数: 0

摘要

天线阵元之间的相互耦合降低了空间处理算法的性能,如天线阵输出的信噪比(SINR)、天线增益等。如果互耦矩阵(MCM)已知,则可以通过将输入信号预先乘以耦合矩阵的逆(假设它是可逆的)来减轻互耦效应。不幸的是,它需要大量的计算工作,成本为O(N2),其中N是天线单元的数量,特别是对于大型天线阵列应用。考虑到MCM具有Toeplitz结构,我们提出使用快速的循环卷积算法,其中2N≤M < 4N, M为数的2次幂,以减轻互耦合的代价为O(MlogM)。讨论了大型自适应天线阵在相互耦合和解耦后的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast mutual coupling compensation algorithm for large adaptive antenna array
The mutual coupling between antenna array elements degrades the performance of spatial processing algorithm, such as signal-to-interference-plus-noise ratio (SINR) in output of antenna array, antenna gain, and so on. If the mutual coupling matrix (MCM) is known, mutual coupling effect can be mitigated by pre-multiplying the input signal by the inverse of the coupling matrix (assuming that it is invertible). Unfortunately, it requires intensive computational work with the cost of O(N2), where N is a number of antenna elements, especially for large antenna array applications. Taking into account that MCM has the Toeplitz structure, we propose to mitigate the mutual coupling with the cost of O(MlogM) by using fast algorithm that involve circular convolution, where 2N ≤ M < 4N and M is a number of power two. The performance of large adaptive antenna array in the presence of mutual coupling as well as after decoupling is discussed.
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