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Hybrid Beamformer Codebook Design and Ordering for Compressive mmWave Channel Estimation

机译:混合式波束形成器密码本设计和压缩毫米波信道估计的排序

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In millimeter wave (mmWave) communication systems, beamforming with large antenna arrays is critical to overcome high path losses. Separating all-digital beamforming into analog and digital stages can provide the large reduction in power consumption needed for practical implementations with a tradeoff of a small loss in spectral efficiency. Developing algorithms with this favorable tradeoff is challenging due to the additional degrees of freedom in the analog stage and its accompanying hardware constraints. In hybrid beamforming systems, for example, channel estimation algorithms do not directly observe the channels, face a high channel count, and operate at low SNR before transmit-receive beam alignment. Since mmWave channels are sparse in time and beam domains, many compressed sensing (CS) channel estimation algorithms have been developed that randomly conFigure the analog beamformers, digital beamformers, and/or pilot symbols. In this paper, we propose to design deterministic beamformers and pilot symbols for open-loop channel estimation. We use CS approaches that rely on low coherence for their recovery guarantees, and hence seek to minimize the mutual coherence of the compressed sensing matrix. We also propose a precoder column ordering to design the pilot symbols. Simulation results show that our beamformer designs reduce channel estimation error over competing methods.
机译:在毫米波(mmWave)通信系统中,大型天线阵列的波束成形对于克服高路径损耗至关重要。将全数字波束成形分离为模拟和数字级可以大大降低实际实现所需的功耗,但需要权衡频谱效率的小损失。由于在模拟阶段具有更多的自由度以及随之而来的硬件限制,因此开发具有这种有利折衷的算法具有挑战性。例如,在混合波束成形系统中,在发送-接收波束对准之前,信道估计算法不会直接观察信道,面对大量信道并以低SNR工作。由于mmWave信道在时域和波束域上都很稀疏,因此已经开发了许多压缩感知(CS)信道估计算法,这些算法随机配置模拟波束形成器,数字波束形成器和/或导频符号。在本文中,我们建议设计确定性波束形成器和导频符号以进行开环信道估计。我们使用依赖于低相干性的CS方法来保证其恢复,因此寻求将压缩感测矩阵的相互相干性最小化。我们还建议使用预编码器列排序来设计导频符号。仿真结果表明,与竞争方法相比,我们的波束形成器设计减少了信道估计误差。

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