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Analysis of Injection Pulling in Phase-Locked Loops With a New Modeling Technique

机译:一种新型建模技术分析锁相环中的注射拉力

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A new formulation is presented for the analysis of phase-locked loops (PLL). It is based on the use of a realistic reduced-order model for the voltage-controlled oscillator, extracted from harmonic-balance (HB) simulations. An HB formulation of the reduced-order PLL equations enables an efficient analysis of the PLL in unlocked conditions, and therefore, prediction of common hysteresis phenomena. The injection-pulling effects in the presence of interference signals are analyzed taking into account the nonlinearity of the phase detector. The interfered PLL in locked conditions is analyzed with a single-tone HB formulation of the reduced-order system, whereas a two-tone HB analysis is used for the analysis in unlocked conditions. The frequency-domain formulation enables an accurate and efficient prediction of the effect of the interferer on the hold-in and lock-in ranges, here investigated, to our knowledge, for the first time. The analysis has been successfully applied to a PLL operating at 5.3 GHz.
机译:提出了一种用于分析锁相环(PLL)的新公式。它基于从谐波平衡(HB)模拟中提取的压控振荡器的逼真的降阶模型。降阶PLL方程的HB公式可在未锁定条件下对PLL进行有效分析,因此可以预测常见的磁滞现象。考虑到相位检测器的非线性,分析了存在干扰信号时的注入-牵引效应。使用降阶系统的单音HB公式分析锁定条件下的受干扰PLL,而在解锁条件下使用两音HB分析进行分析。频域公式化可以准确而有效地预测干扰物对保持和锁定范围的影响,据我们所知,这里是首次对此进行研究。该分析已成功应用于工作在5.3 GHz的PLL。

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