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Simulation Method for Complex Multivalued Curves in Injection-Locked Oscillators

机译:注入锁定振荡器中复杂多值曲线的仿真方法

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摘要

A new methodology is presented for the efficient harmonic-balance simulation of injection-locked oscillators with complex multivalued and disconnected curves. It is illustrated through its application to high-order subharmonically injection-locked oscillators. A graphical technique is applied to analyze the oscillator-phase sensitivity with respect to the input signal, required for the injection-locked operation. The intricate synchronized-solution curves are obtained with the new method, which enables a global exploration of all the coexistent periodic solutions. These solutions can belong to different curve sections, in a multivalued response, or to disconnected synchronization curves. The method is based on the calculation of a series of phase-dependent outer-tier admittance functions, which provide the oscillator response to the injection signal. Coexistent solutions are simultaneously obtained through a contour-plot intersection, without the need for continuation techniques. The method is illustrated through application to an oscillator synchronized to low-frequency sinusoidal signal by means of a nonlinear-transmission line. The analysis and design techniques have been successfully validated through comparison with independent simulations and measurements.
机译:提出了一种用于复杂多值曲线和非连续曲线的注入锁定振荡器的有效谐波平衡仿真的新方法。通过将其应用于高阶次谐波注入锁定振荡器进行了说明。应用了图形技术来分析注入锁定操作所需的相对于输入信号的振荡器相位灵敏度。使用新方法可以获得复杂的同步解曲线,从而可以全局浏览所有并存的周期解。这些解决方案可以属于多值响应中的不同曲线部分,也可以属于断开的同步曲线。该方法基于一系列依赖于相位的外层导纳函数的计算,这些函数提供振荡器对注入信号的响应。通过等高线交点可以同时获得共存解,而无需延续技术。通过应用到通过非线性传输线与低频正弦信号同步的振荡器来说明该方法。通过与独立的仿真和测量进行比较,已经成功地验证了分析和设计技术。

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