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Hierarchical beam selection in mmWave multiuser MIMO systems with one-bit analog phase shifters

机译:具有一位模拟移相器的mmWave多用户MIMO系统中的分层波束选择

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Hybrid digital/analog precoding has been widely utilized in millimeter-wave (mmWave) multiple-input multiple-output (MIMO) systems. Compared to the digital precoder, it is more challenging to design the analog precoder because of the constant amplitude (CA) constraints on the entries. Although high-resolution analog phase shifters (APSs) can provide more choices in phase adjustment, it also adds the difficulty in designing effective codebooks for beam selection. In addition, the finer APSs are accompanied by the higher hardware cost and power consumption. Driven by the low hardware cost and power consumption, we employ one-bit APSs to perform analog precoding. A simple codebook for hierarchical searching is designed. Then a low-complexity hierarchical beam selection algorithm is devised to reduce the training overhead. An approximate expression of spectral efficiency after hybrid precoding in one-bit-APS system is also derived, which is close to the simulation results in medium signal-to-noise ratio (SNR). Despite a performance degradation, both the theoretical analysis and the simulation results show that the performance is still comparable to the existing alternatives with much lower training overhead and hardware cost. Therefore, the proposed one-bit-APS system can be an acceptable tradeoff in practical implementation.
机译:混合数字/模拟预编码已广泛用于毫米波(mmWave)多输入多输出(MIMO)系统中。与数字预编码器相比,设计模拟预编码器更具挑战性,因为条目上存在恒定的幅度(CA)约束。尽管高分辨率模拟移相器(APS)可以在相位调整中提供更多选择,但它也增加了设计用于波束选择的有效码本的难度。此外,更精细的APS伴随着更高的硬件成本和功耗。在较低的硬件成本和功耗的驱动下,我们采用一位APS执行模拟预编码。设计了一个简单的用于分层搜索的密码本。然后设计了一种低复杂度的分层波束选择算法来减少训练开销。还推导了在一位APS系统中进行混合预编码后的频谱效率的近似表达式,这与中等信噪比(SNR)的模拟结果相近。尽管性能下降,但理论分析和仿真结果均表明,该性能仍可与现有替代方案相媲美,并且培训开销和硬件成本要低得多。因此,所提出的一比特APS系统在实际实施中可能是可以接受的折衷方案。

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