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Calculation of the Performance of Communication Systems From Measured Oscillator Phase Noise

机译:根据测得的振荡器相位噪声计算通信系统的性能

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Oscillator phase noise (PN) is one of the major problems that affect the performance of communication systems. In this paper, a direct connection between oscillator measurements, in terms of measured single-side band PN spectrum, and the optimal communication system performance, in terms of the resulting error vector magnitude (EVM) due to PN, is mathematically derived and analyzed. First, a statistical model of the PN, considering the effect of white and colored noise sources, is derived. Then, we utilize this model to derive the modified Bayesian Cramér-Rao bound on PN estimation, and use it to find an EVM bound for the system performance. Based on our analysis, it is found that the influence from different noise regions strongly depends on the communication bandwidth, i.e., the symbol rate. For high symbol rate communication systems, cumulative PN that appears near carrier is of relatively low importance compared to the white PN far from carrier. Our results also show that 1/f ³ noise is more predictable compared to 1/f ² noise and in a fair comparison it affects the performance less.
机译:振荡器相位噪声(PN)是影响通信系统性能的主要问题之一。本文通过数学方法推导和分析了振荡器测量值之间的直接联系,就测量的单边带PN频谱而言,振荡器的测量结果与最优通信系统性能之间的关系(就由此产生的误差矢量幅度(EVM))而言。首先,得出考虑了白色和彩色噪声源影响的PN统计模型。然后,我们利用该模型得出PN估计值的修正贝叶斯Cramér-Rao界,并使用它找到系统性能的EVM界。根据我们的分析,发现来自不同噪声区域的影响在很大程度上取决于通信带宽,即符号率。对于高符号率通信系统,与远离载波的白色PN相比,出现在载波附近的累积PN的重要性相对较低。我们的结果还表明,与1 /f²噪声相比,1 /f³噪声更可预测,并且在合理的比较中,它对性能的影响较小。

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