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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Millimeter-Wave Modulated-Signal and Error-Vector-Magnitude Measurement With Uncertainty
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Millimeter-Wave Modulated-Signal and Error-Vector-Magnitude Measurement With Uncertainty

机译:不确定度的毫米波调制信号和误差矢量幅度测量

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摘要

We provide techniques to generate and characterize precision wideband millimeter-wave modulated signals. We use predistortion to obtain a significant improvement in signal quality and an associated reduction in the error vector magnitude (EVM) of the signals generated by an arbitrary-waveform-generator-based source. We adapt a recently developed microwave uncertainty framework to the problem and use it to estimate the uncertainties in the modulated-signal measurements. Models of uncertainties related to all calibration and measurement procedures within the traceability path are included in a sensitivity analysis and Monte Carlo simulations that maintain correlations between time- and frequency-domain errors. We demonstrate EVM values of approximately 1.6% 0.5% for a 1-GSymbol/s 64-state quadrature-amplitude-modulated signal at 44 GHz.
机译:我们提供了生成和表征精密宽带毫米波调制信号的技术。我们使用预失真来显着改善信号质量,并相应减少由基于任意波形发生器的信号源生成的信号的误差矢量幅度(EVM)。我们采用最新开发的微波不确定性框架来解决该问题,并使用它来估计调制信号测量中的不确定性。与追踪路径内所有校准和测量程序有关的不确定性模型包含在灵敏度分析和蒙特卡洛仿真中,这些仿真可保持时域和频域误差之间的相关性。对于44 GHz的1-GSymbol / s 64状态正交幅度调制信号,我们证明了约1.6%0.5%的EVM值。

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