Fractional-order Sinusoidal Oscillator with Arbitrary Phase Fining and Orthogonally CO and FO

Peradol Pienpichayapong, Natapong Wongprommoon, P. Prommee
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Abstract

This work presents a new fractional-order sinusoidal oscillator (FSO) based on OPAMP. The original circuit consists of two fractional-order lossless integrators (FLI) and some basic circuits. The RLC Foster approximation is used to realize the fractance capacitors. The CO and FO can be independently tuned. The order of passive device (a) is also orthogonally with CO and FO. In addition, the phase fining technique of the proposed FSO can easily be modified by replacing a couple of FLI with the existing FLL The characteristics of the circuit work well agreed with the original one. PSpice carries out the simulation results based on the model LF347 OPAMP. The results are in good agreement with the theoretical.
具有任意相位细化和正交CO和FO的分数阶正弦振荡器
提出了一种基于OPAMP的分数阶正弦振荡器(FSO)。原始电路由两个分数阶无损积分器(FLI)和一些基本电路组成。采用RLC福斯特近似实现了分数电容。CO和FO可以独立调谐。无源器件(a)的阶数也与CO和FO正交。此外,所提出的FSO的相位细化技术可以很容易地通过用现有的FLL替换一对FLI进行修改,电路的特性与原电路一致。PSpice基于LF347 OPAMP模型进行仿真。计算结果与理论结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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