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PPV-Based Modeling and Event-Driven Simulation of Injection-Locked Oscillators in SystemVerilog

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

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摘要

This paper presents an event-driven simulation methodology for injection-locked oscillators. The proposed method adopts a phase-domain macromodel based on a perturbation projection vector (PPV), which expresses the oscillator's phase response using a nonlinear, time-varying differential equation. By expressing the PPV using a piecewise polynomial function, the PPV model can be simulated in an event-driven fashion on a digital logic simulator like SystemVerilog. While this piecewise polynomial approximation introduces a trade-off between the simulation accuracy and speed, our results show that the simulation accuracy quickly reaches its optimal value as the piecewise interval number increases even with first-order polynomials. The experimental results with an LC oscillator, ring oscillator, and burst-mode CDR models operating with both periodic and aperiodic inputs demonstrate that the proposed models achieve speeds up to that of transistor-level Spectre simulations with the same accuracy.
机译:本文介绍了一种事件驱动的注入锁定振荡器仿真方法。所提出的方法采用基于扰动投影矢量(PPV)的相域宏模型,该模型使用非线性时变微分方程表示振荡器的相位响应。通过使用分段多项式函数表达PPV,可以在事件驱动方式下在诸如SystemVerilog的数字逻辑模拟器上模拟PPV模型。虽然这种分段多项式逼近在仿真精度和速度之间进行了折衷,但我们的结果表明,即使采用一阶多项式,随着分段间隔数的增加,仿真精度也会迅速达到其最佳值。具有周期性和非周期性输入的LC振荡器,环形振荡器和猝发模式CDR模型的实验结果表明,所提出的模型在相同精度下的速度可达到晶体管级Spectre仿真的速度。

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