Practical Large Scale Antenna Systems for 5G cellular networks

C. Rowell, Shuangfeng Han
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引用次数: 7

Abstract

In order to increase capacity and reduce power consumption for future cellular networks, new cellular architectures and radio access schemes will be required. Two important technologies for future 5G and 6G networks include Cloud-Radio Access Networks (C-RAN) and Large Scale Antenna Systems (LSAS) with hundred's of low power radios to increase the cell capacity with multi-user MIMO multiplexing and beamforming. Although LSAS in theory promises large capacity gains at the fraction of the power consumed by the current macro-basestations; there are many practical challenges that need to be overcome before LSAS can be successfully integrated into current and future cellular networks: 1) low-power beamforming algorithms, 2) frequency, amplitude, and phase calibration of asynchronous radios; 3) irregular array beamforming, 4) front-haul data capacity linkage between the LSAS and a C-RAN unit; and 5) standardized measurement procedures. This paper briefly examines each challenge and proposes possible solutions.
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5G蜂窝网络的实用大规模天线系统
为了增加容量并降低未来蜂窝网络的功耗,将需要新的蜂窝架构和无线接入方案。未来5G和6G网络的两项重要技术包括云无线接入网(C-RAN)和大规模天线系统(LSAS),该系统具有数百个低功率无线电,可通过多用户MIMO多路复用和波束形成来增加小区容量。虽然LSAS在理论上承诺在当前宏观基站消耗的功率的一小部分上获得较大的容量增益;在将LSAS成功集成到当前和未来的蜂窝网络之前,需要克服许多实际挑战:1)低功率波束形成算法;2)异步无线电的频率、幅度和相位校准;3)不规则阵列波束形成;4)LSAS和C-RAN单元之间的前传数据容量链接;5)标准化的测量程序。本文简要探讨了每个挑战并提出了可能的解决方案。
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