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OTA Testing for Massive MIMO Devices Using Cascaded APM Networks and Channel Emulators

机译:使用级联APM网络和通道仿真器的大型MIMO器件的OTA测试

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摘要

This paper proposes an over-the-air (OTA) testing setup for millimeter-wave (mmWave) massive multiple-input multiple-output (MIMO) equipment using cascaded amplitude and phase modulation (APM) network and channel emulator. Compared with the existing test setup with mechanical switch, the proposed testing setup enables more accurate reconstruction of the radio channel environment under the multiprobe anechoic chamber (MPAC) setup without increasing the number of channel emulators (CEs) to control the system cost. The constructed MPAC testing setup for mmWave and massive MIMO equipment is composed of an anechoic chamber, a sectored probe wall containing a number of probes, an APM network, a fading channel emulator, and a user emulator (UE). In this paper, the structural model and the performance advantages of the proposed radiated testing setup are described, and a fully connected APM network for radiated testing is more prominent than the existing switch. Moreover, the angular spectrum is selected as the performance metric for the reconstructed channel. The ability of the proposed system to reconstruct the power angular spectrum (PAS) of the target channel is studied under both static and dynamic channel models, which can reflect the performance of beamforming procedures of the massive MIMO antenna arrays, e.g., beam acquisition, tracking, and refinement. The simulation results for angular spectrum support the superiority of the proposed OTA testing setup. Furthermore, the simulations for average channel capacity also show that radiated testing setup using cascaded APM network and channel emulator is valid.
机译:本文提出了使用级联幅度和相位调制(APM)网络和通道仿真器的毫米波(MMWAVE)大规模多输入多输出(MIMO)设备的空中(OTA)测试设置。与具有机械开关的现有测试设置相比,所提出的测试设置可以在多焦声AneChice室(MPAC)设置下的无线电信道环境中的更准确地重建,而不会增加信道仿真器(CE)的数量来控制系统成本。用于MMWAVE和大规模MIMO设备的构建的MPAC测试设置由一个AneChice室组成,该探测器包括多个探针,APM网络,衰落通道仿真器和用户仿真器(UE)的扇形探针壁。在本文中,描述了所提出的辐射测试设置的结构模型和性能优势,并且用于辐射测试的完全连接的APM网络比现有交换机更突出。此外,选择角频谱作为重建信道的性能度量。在静态和动态信道模型中研究了所提出的系统重建目标信道的功率角频谱(PAS)的能力,这可以反映大规模MIMO天线阵列的波束成形程序的性能,例如光束采集,跟踪和细化。角频谱的仿真结果支持所提出的OTA测试设置的优越性。此外,平均信道容量的模拟还显示使用级联APM网络和通道仿真器的辐射测试设置有效。

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