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A random input-driven resistor-capacitor series circuit

机译:随机输入驱动的电阻电容串联电路

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摘要

In this paper, we present the noise analysis of simple, but an appealing resistor-capacitor series circuit. As it has found applications in many circuits like RC filter in phase locked loop. The noise originates from the arbitrary thermal motion of carriers and the discreteness of charge. Noise signals are random and must be treated by statistical means. Even though we cannot predict the real noise waveform, we can envisage the statistics such as the mean (average) and variance. Generally, noise contributions to electrical circuits are not accounted for when using deterministic differential equations for their modeling and ignoring noise contributions lead to poor state estimation. A first-order Ordinary Differential Equation (ODE) is used for the response analysis of the circuit. As a result of these, in this paper, the deterministic model is replaced with a stochastic model by adding a noise term as a random voltage source, which drives the RC circuit. The Itô theory is applied to the noise analysis of the noisy dynamic circuit considered here. The Itô theory has found surprising applications in stochastic models arising from diverse field. Numerical simulations of the charge with and without noise, the mean and variance of the charge using MATLAB are discussed.
机译:在本文中,我们介绍了简单但具有吸引力的电阻器-电容器串联电路的噪声分析。现已发现它已在许多电路中应用,例如锁相环中的RC滤波器。噪声源于载流子的任意热运动和电荷的离散性。噪声信号是随机的,必须通过统计手段进行处理。即使我们无法预测实际的噪声波形,也可以设想统计数据,例如平均值(平均值)和方差。通常,在使用确定性微分方程进行建模时,不考虑对电路的噪声影响,而忽略噪声影响会导致状态估计不佳。一阶常微分方程(ODE)用于电路的响应分析。结果,在本文中,通过添加噪声项作为随机电压源来驱动RC电路,将确定性模型替换为随机模型。 Itô理论被应用于此处考虑的带噪声动态电路的噪声分析。 Itô理论已经发现了由不同领域产生的随机模型的惊人应用。讨论了使用MATLAB进行带或不带噪声的电荷的数值模拟,电荷的均值和方差。

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