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Carrier Aggregation for Phased-Array Analog Beamforming with Beam Squint

机译:带波束抑制的相控阵模拟波束形成的载波聚合

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To aggregate or not to aggregate, that is the question. Analog beamforming with phased arrays is a promising technique for 5G wireless communication in millimeter wave bands. However, beam squint degrades the performance of analog beamforming for wideband systems with a large number of antennas, because the array response varies with frequency. In this paper, we show that carrier aggregation for phased-array analog beamforming should take beam squint into consideration. Specifically, we study the optimal beam alignment to maximize channel capacity, and demonstrate that, with sufficient band separation, focusing on only one band outperforms carrier aggregation. Approximations are developed for a system with two bands to determine the critical values of system parameters like band separation, angle of arrival, and signal-to-noise ratio beyond which it is preferable not to aggregate.
机译:是聚集还是不聚集,这就是问题所在。相控阵的模拟波束成形是毫米波频段5G无线通信的一项有前途的技术。但是,斜射斜视会降低具有大量天线的宽带系统的模拟波束成形性能,因为阵列响应会随频率变化。在本文中,我们表明,相控阵模拟波束成形的载波聚合应考虑斜视。具体来说,我们研究了最佳的波束对准以最大化信道容量,并证明在充分的频带分离下,仅关注一个频带的性能优于载波聚合。为具有两个频带的系统开发了近似值,以确定系统参数的临界值,例如频带间隔,到达角和信噪比,超过该值时最好不要进行汇总。

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