5G相控阵近场多探头OTA校准

Calibration Array Based Near-Field Multi-Probe OTA Calibration for 5G Phased Arrays

  • 摘要: 为解决1.8~6.0 GHz频段内5G相控阵的大批量、快速、高效的幅相校准,该文提出一种新型近场多探头空口幅相校准方法。该方法先用多探头阵列,从校准阵获取基准的校准参数,然后利用校准阵近/远场之间的传递函数关系,对待测阵各通道进行幅相校准。文中分析了校准误差的来源与影响,并用4×4多探头近场测量阵列,研制出了测试系统,对方法的可行性与准确性进行了实测验证。仿真与实测结果表明,幅度校准误差在±0.5 dB之内、相位校准误差在±5°之内。相比已有空口校准系统,该系统体积更小、效率更高,校准精度与远场校准基本相当,展现出对大批量小型5G相控阵进行产线快速幅相校准的能力。

     

    Abstract: In order to quickly and efficiently calibrating a large number of 5G phased arrays operating in 1.8~6.0 GHz, a novel near-field multi-probe OTA (over the air) calibration method is presented in this paper. In this method, the reference data is firstly extracted from a calibration array, Then the channels’ amplitudes and phases of DUT (device under test) are calibrated according to the linear transfer functions of the calibration array from the near field to the far field. The reasons for the calibration errors and their influences have also been studied. A principle verification system with a 4×4 near-field probe array is fabricated to validate the feasibility and accuracy of the proposed method. The measured results show that the amplitude and phase of the calibration error are within ±0.5dB and±5°, respectively. Comparing the existing OTA calibration systems, the new system has much smaller size, higher efficiency, the very close calibration accuracy, which demonstrate a promising ability of fast calibrating batched 5G phased arrays on production lines.

     

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