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PPV-based modeling and event-driven simulation of injection-locked oscillators in SystemVerilog

机译:基于PPV的SystemVerilog中注入锁定振荡器的建模和事件驱动仿真

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Injection-locked oscillators (ILO) have widespread use in wireline and wireless systems as fast-locking clock generators, phase noise filters, and frequency multipliers/ dividers, but their modeling and simulation typically resort to SPICE due to their nonlinear, time-varying characteristics. This paper presents a way to simulate ILOs in an event-driven logic simulator such as SystemVerilog, based on a perturbation projection vector (PPV) model. By expressing the continuous-time signals in analytical forms of which coefficients are updated as events, the nonlinear phase response of the ILO can be simulated in an algebraic fashion without numerical integration. The simulation methodology is demonstrated with the modeling examples of a phase-locked loop and a burst-mode clock recovery loop, each employing a injected-locked frequency divider and oscillator, respectively.
机译:注入锁定振荡器(ILO)在有线和无线系统中已广泛用作快速锁定时钟发生器,相位噪声滤波器和倍频器/分频器,但由于其非线性,时变特性,它们的建模和仿真通常诉诸于SPICE。 。本文介绍了一种基于扰动投影矢量(PPV)模型,在事件驱动的逻辑模拟器(例如SystemVerilog)中模拟ILO的方法。通过以分析形式表示连续时间信号,将其系数作为事件进行更新,可以以代数方式模拟ILO的非线性相位响应,而无需进行数值积分。通过锁相环和突发模式时钟恢复环的建模示例演示了该仿真方法,每个示例分别使用了注入锁定分频器和振荡器。

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