Phase Calibration of Multiple Software Defined Radio Transmitters for Beamforming in 5G Communication

Nageswara Rao Dusari, M. Rawat
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引用次数: 2

Abstract

Beamforming is the key technique used in 5G communication systems for transmitting/receiving signals only in a particular direction. An accurate phase is needed to apply to the beamforming antenna array to steer the beam in a particular direction. Generally, multiple software-defined radios (SDR) are used for flexible beamforming. Whereas these multiple SDRs contain phase differences in transmitting paths due to nonlinearities in their components and the use of an individual clock and local oscillators (LO). Therefore, this paper presents the methodology to calibrate the phase differences in different transmitting paths of SDR before applying signals to the antenna elements for beamforming. This paper presents the methodology to estimate the phase offset using the cross-covariance method. A method is presented to synchronize multiple SDRs accurately. As a proof of concept, the SDR setup is built with the analog transceiver AD9371 from Analog Devices and ZC706 FPGA board from Xilinx. The measurement results with phase compensation after synchronization achieves an NMSE of around −35 dB between the signals of different transmitter paths. A 1×4 antenna array operating at 2.4 GHz has been designed in simulation, and the main beam is achieved in the desired direction after phase compensation.
5G通信中用于波束形成的多软件无线电发射机相位校准
波束成形是5G通信系统中用于仅在特定方向上发送/接收信号的关键技术。波束形成天线阵列需要一个精确的相位来引导波束向特定的方向。一般采用多软件定义无线电(SDR)实现柔性波束形成。然而,由于其组件的非线性以及单个时钟和本地振荡器(LO)的使用,这些多个sdr在传输路径中包含相位差。因此,本文提出了在将信号施加到天线单元进行波束形成之前,对SDR不同发射路径的相位差进行校准的方法。本文提出了用交叉协方差法估计相位偏移的方法。提出了一种精确同步多个sdr的方法。作为概念验证,SDR设置使用analog Devices的模拟收发器AD9371和Xilinx的ZC706 FPGA板构建。同步后进行相位补偿的测量结果表明,不同发射路径信号之间的NMSE约为−35 dB。仿真设计了工作频率为2.4 GHz的1×4天线阵列,经相位补偿后,主波束达到预期方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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