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Phase Noise Simulation in Analog Mixed Signal Circuits: An Application to Pulse Energy Oscillators

机译:模拟混合信号电路中的相位噪声仿真:在脉冲能量振荡器上的应用

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Noise simulation of oscillators modeled in an analog mixed signal environment is challenging since both conventional steady-state simulation methods, such as shooting and harmonic balance ones, cannot be used. This brief proposes an improved approach based on saltation matrices and an extended formulation that considers the registers of the digital part of the circuit as state variables to determine the steady-state solution and phase noise. The proposed approach allows the correct computation of the fundamental matrix evaluated on the steady-state solution and therefore of the left eigenfunctions that are a key aspect in determining phase noise by exploiting the variational model of the oscillator and Floquet theory. The proposed approach is applied to compute the phase noise of an archetype circuit that implements an energy-restore pulsed oscillator. In these oscillators, the energy lost by the tank is refilled at peculiar time instants determined by a digital controller to maximize efficiency and minimize effects due to flicker noise sources.
机译:在模拟混合信号环境中建模的振荡器的噪声仿真具有挑战性,因为不能同时使用传统的稳态仿真方法(例如射击和谐波平衡方法)。本简介提出了一种基于盐析矩阵和扩展公式的改进方法,该方法将电路数字部分的寄存器视为状态变量,以确定稳态解和相位噪声。所提出的方法允许正确计算在稳态解上评估的基本矩阵,因此可以正确利用左特征函数,这是通过利用振荡器和Floquet理论的变分模型确定相位噪声的关键方面。该方法被应用于计算原型电路的相位噪声,该原型电路实现了能量恢复脉冲振荡器。在这些振荡器中,储罐损失的能量会在由数字控制器确定的特殊时刻重新填充,以最大程度地提高效率,并将闪烁噪声源带来的影响降至最低。

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