Massive multiple-input multiple-out (MIMO) technology is vital in millimeter-wave (mmWave) bands to obtain large array gains. However, there are practical challenges, such as high hardware cost and power consumption in such systems. A promising solution to these problems is to adopt a hybrid beamforming architecture. This architecture has a much lower number of transceiver (TRx) chains than the total antenna number, resulting in cost- and energy-efficient systems. In this paper, we present a real-time mmWave (28 GHz) massive MIMO testbed with hybrid beamforming. This testbed has a 64-antenna/16-TRx unit for beam-selection, which can be expanded to larger array sizes in a modular way. For testing everything from baseband processing algorithms to scheduling and beam-selection in real propagation environments, we extend the capability of an existing 100-antenna/100-TRx massive MIMO testbed (below 6 GHz), built upon software-defined radio technology, to a flexible mmWave massive MIMO system.
翻译:大型多输入多输出(MIMO)技术对于千兆瓦(mmWave)波段获得大型阵列收益至关重要,然而,还存在一些实际挑战,如硬件成本和这种系统中的电能消耗高等。这些问题的一个大有希望的解决办法是采用混合波束结构。这一结构的收发器链比总天线数少得多,从而产生了成本和能源效率高的系统。在本文中,我们提出了一个实时毫米Wave(28 GHz)大型MIMO测试床,并配有混合波束成形。这个测试台有一个64-antenna/16-TRx用于波束选择的单元,可以模块化方式将其扩大至更大的阵列规模。为了测试从基带处理算法到实际传播环境中的排期和分选,我们将现有的100-antan/100-TRx大型MIMO测试台(小于6 GHz)的能力扩大到一个软定义无线电技术建立的软式大型MIMIMO系统。