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Locking Range Maximization in Injection-Locked Class-E Oscillator—A Case Study for Optimizing Synchronizability

机译:注射锁定的类振荡器中的锁定范围最大化 - 用于优化同步性的案例研究

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We propose a method for designing optimal external forcings of injection-locked oscillators. This method enables to maximize the locking range of general injection-locked oscillators under certain practical constraints that encompass the power, magnitude, or area of forcing waveforms. Here, as a case study, we focus on a class-E oscillator in the injection-locked mode, for which we obtain the following systematic results. First, by using the proposed method, the optimal waveform of external forcings is obtained analytically under three different constraints, i.e., the power- (i.e., root mean square-) reduced, magnitude-reduced, and area-reduced constraints. Second, through systematic circuit simulations, those predicted optimal forcings are verified to outperform any other forcings. Third, circuits experiments confirm that the theoretical predictions and the circuit simulation results are correct and consistent, regarding lock range maximization. These findings result in a first demonstration of locking range maximization for practical electrical oscillators.
机译:我们提出了一种设计注射锁定振荡器的最佳外部强制性的方法。该方法可以在包含电源,幅度或强制波形区域的某些实际限制下最大化一般注射锁定振荡器的锁定范围。在这里,作为一个案例研究,我们专注于注射锁定模式中的E类振荡器,我们获得了以下系统结果。首先,通过使用所提出的方法,在三个不同的约束下分析地获得外部强制的最佳波形,即,电力 - (即根均线 - )减小,大小减小和区域减少的约束。其次,通过系统电路模拟,验证了这些预测的最佳强制以优于任何其他强制性。第三,电路实验证实,理论上预测和电路仿真结果是正确且一致的,关于锁定范围最大化。这些发现导致实用电气振荡器的锁定范围最大化的第一次演示。

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