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Multi-User Frequency-Selective Hybrid MIMO Demonstrated Using 60 GHz RF Modules

机译:使用60 GHz射频模块演示多用户选频混合MIMO

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摘要

Given the high throughput requirement for 5G, merging millimeter wave technologies and multi- user MIMO seems a very promising strategy. As hardware limitations impede to realize a full digital architecture, hybrid MIMO architectures using both analog and digital precoding are considered a feasible solution to implement multi- user MIMO at millimeter wave. Real channel propagation and hardware non-idealities degrade the performance of such systems thus experimenting the new architecture is crucial to support system design. Nevertheless, hybrid MIMO systems are not yet understood as the effects of the wide channel bandwidths at millimeter wave, the non-ideal RF front end as well as the imperfections of the analog beamforming using phased antenna arrays are often neglected. In this paper, we present a 60 GHz multi-user MIMO testbed using phased antenna arrays at both transmitter and receivers. The base station equipped with a 32 phased antenna array allocates simultaneously two users. We show that frequency selective hybrid precoding can efficiently suppress inter-user interference enabling spatial multiplexing in interference limited scenario doubling the throughput compared to a SISO scenario and compensating the frequency fluctuation of the channel. In addition, we report an EVM constellation improvement of 6 dB when comparing the hybrid MIMO architecture with a fully analog architecture.
机译:考虑到5G的高吞吐率要求,将毫米波技术与多用户MIMO融合似乎是一个非常有前途的策略。由于硬件限制阻碍了实现全数字架构,因此使用模拟和数字预编码的混合MIMO架构被认为是在毫米波下实现多用户MIMO的可行解决方案。实际的信道传播和硬件的非理想性会降低此类系统的性能,因此,试验新架构对于支持系统设计至关重要。尽管如此,混合MIMO系统尚未被理解为毫米波,较不理想的RF前端以及使用相控天线阵列的模拟波束成形的缺陷所引起的宽信道带宽的影响。在本文中,我们介绍了一个在发射器和接收器均使用相控天线阵列的60 GHz多用户MIMO测试平台。配备有32相天线阵列的基站同时分配两个用户。我们展示了频率选择性混合预编码可以有效地抑制用户间干扰,从而在干扰受限的情况下实现空间复用,与SISO情况相比,吞吐量增加了一倍,并可以补偿信道的频率波动。此外,当将混合MIMO架构与全模拟架构进行比较时,我们报告EVM星座图改善了6 dB。

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