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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Removing Random Phase Contributions of Sweeping Local Oscillator From Modulated RF Measurements
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Removing Random Phase Contributions of Sweeping Local Oscillator From Modulated RF Measurements

机译:从调制的RF测量中消除扫描本地振荡器的随机相位贡献

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This paper proposes a measurement strategy to remove the random phase contributions of the sweeping local oscillator (LO) from modulated radio frequency phase measurements based on downconversion. To obtain a stable phase spectrum for each run of tone-by-tone sweeping measurement, the LO used for downconversion is coupled out to an extra path and modulated to be a wideband multisine signal. By monitoring the phase change of multisine signal at a specific and fixed frequency point, random LO phase offsets during the frequency sweep can be measured and compensated. In this paper, two experimental test benches with the same core measurement strategy but different architectures are established for method validation. According to the experimental results using test bench one, the phase stability is ±(0.2°–0.4°) at 1.8 GHz for fundamental mixing-based downconversion and ±(0.6°–1°) for harmonic mixing at 6 GHz. Based on test bench two, relative phase deviations of ±(0.8°–1.2°) at 22 GHz for fundamental mixing and ±(2°–3°) at 66 GHz for harmonic mixing are reachable.
机译:本文提出了一种测量策略,用于从基于下变频的已调制射频相位测量中消除扫描本振(LO)的随机相位贡献。为了获得每次音调扫描测量的稳定相位频谱,用于下变频的LO耦合到一条额外路径,并调制为宽带多正弦信号。通过监视特定和固定频率点上的多正弦信号的相位变化,可以测量和补偿频率扫描期间的随机本振相位偏移。在本文中,建立了两个具有相同核心测量策略但架构不同的实验测试台,以进行方法验证。根据使用试验台一的实验结果,对于基于基本混合的下变频,在1.8 GHz时的相位稳定性为±(0.2°–0.4°),对于在6 GHz的谐波混合,其相位稳定性为±(0.6°–1°)。根据第二个试验台,基本混频在22 GHz时的相对相位偏差为±(0.8°–1.2°),谐波混频在66 GHz时为±(2°–3°)。

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