用于近距离通信的高吞吐量毫米波MIMO波束形成系统

Eran Pisek, S. Abu-Surra, J. Mott, Thomas Henige, Rashbha Sharma
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引用次数: 14

摘要

在过去十年中,随着不同无线连接标准的引入及其演变(如IEEE802.11n/ac和IEEE802.11ad),对短距离通信的兴趣显著增加。对高分辨率多媒体应用(如UHD)的新需求推动了超过30Gbps的更高数据速率。这种高数据速率需求要求短距离标准采用一种新的方法来适应这些速率。毫米波支持高带宽使用,这意味着更高的容量可以容纳10-100Gbps的数据速率。然而,高数据速率对系统的算法和体系结构都提出了巨大的挑战。本文提出了一种基于fpga的毫米波近程通信高吞吐量波束形成MIMO系统。我们首次实现了一个完整的毫米波短距离通信系统,该系统包括射频前端、ADC/DAC、波束形成控制、同步、信道估计、MIMO预编码/检测和信道编码器/解码器。该设计工作在毫米载波频率下,带宽为500MHz, 2通道MIMO波束形成。我们展示了在毫米波系统中捕获的实时应用测试结果。
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High throughput millimeter-wave MIMO beamforming system for short range communication
The interest in short range communication has significantly increased in the last decade with the introduction of different wireless connectivity standards and their evolution such as IEEE802.11n/ac and IEEE802.11ad. New demands for higher resolution multimedia applications such as UHD push for higher data rates to exceed 30Gbps. This high data rate demand requires short range standards to adopt a new approach to accommodate these rates. Millimeter wave enable high bandwidth usage which implies higher capacity to accommodate 10-100Gbps data rates. However, the high data rate pose big challenges to both the system algorithm and architecture. In this paper, we propose a novel FPGA-based high-throughput beamforming MIMO system for millimeter wave short range communication. We present our first realization of a complete millimeter wave short range communication system, which includes RF frontend, ADC/DAC, beamforming control, synchronization, channel estimation, MIMO precoding/detection, and channel encoder/decoder. The design works at millimeter carrier frequency with 500MHz bandwidth and 2-channel MIMO Beamforming. We show realtime application test results as captured in the millimeter wave system.
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