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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Multi-User Hybrid MIMO at 60 GHz Using 16-Antenna Transmitters
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Multi-User Hybrid MIMO at 60 GHz Using 16-Antenna Transmitters

机译:使用16天线发射机的60 GHz多用户混合MIMO

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摘要

Given the high throughput requirement for the next generation wireless communication systems, merging millimeter wave technologies and multi-user MIMO seems a very promising strategy to achieve the required 20 Gbps. Although a full digital architecture provides the best performance and flexibility, its implementation at millimeter-wave frequencies today seems unrealistic due to the prohibitive costs and high power consumption. Hybrid analog-digital architectures, efficiently sharing beamforming operations between analog and digital domains, appear as a feasible way to implement multi-user MIMO systems at millimeter wave frequencies. While hybrid architectures have been studied intensively, an effective and flexible demonstration proving the feasibility is still missing. In this paper, we introduce the design of a millimeter wave multiuser MIMO system with hybrid analog and digital processing using 60 GHz radios equipped with phased arrays. A base station, employing two 16-antennas transmitters, serves simultaneously two user equipment devices, each with 4 antenna elements, effectively realizing spatial multiplexing. We propose a complete system design comprising the description of millimeter radio transceivers, the multi-user hybrid MIMO algorithms including a strategy for channel estimation and frequency selective precoding along with the transmission protocol. We show that the spatial multiplexing is achieved in several scenarios, most importantly in a strong interference-limited scenario.
机译:考虑到下一代无线通信系统对高吞吐量的要求,将毫米波技术与多用户MIMO融合似乎是实现所需20 Gbps的非常有前途的策略。尽管完整的数字体系结构可提供最佳的性能和灵活性,但由于成本过高和功耗高,如今在毫米波频率下实施该方案似乎是不现实的。在模拟域和数字域之间有效共享波束成形操作的混合模拟数字体系结构似乎是在毫米波频率上实现多用户MIMO系统的可行方法。尽管对混合体系结构进行了深入研究,但仍缺乏有效且灵活的证明可行性的演示。在本文中,我们介绍了毫米波多用户MIMO系统的设计,该系统使用配备相控阵的60 GHz无线电进行混合模拟和数字处理。一个采用两个16天线发射机的基站同时为两个用户设备提供服务,每个用户设备具有4个天线单元,有效地实现了空间复用。我们提出了一个完整的系统设计,其中包括对毫米无线电收发器的描述,多用户混合MIMO算法,其中包括用于信道估计和频率选择性预编码以及传输协议的策略。我们展示了在几种情况下实现空间复用,最重要的是在强干扰受限的情况下。

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