基于遗传算法的CMOS LC压控振荡器尺寸优化

E. Asmae, Benhala Bachir
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引用次数: 0

摘要

本文提出了一种0.35µm CMOS交叉耦合差分压控振荡器(CMOS LC-VCO)的优化设计方法,旨在实现低相位噪声、高品质因数(FOM)和低功耗。为了解决设计挑战,采用元启发式遗传算法(GA)确定LC-VCO组件的最佳尺寸,特别是MOS晶体管的通道长度和宽度,使电路发挥最佳性能。所提出的LC-VCO通过ADS仿真软件进行了验证,在2.6 GHz载波频率的1MHz偏置频率下实现了- 124dBc/Hz,功耗为8mw。与其他已发表的作品进行比较,以突出建议设计的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Sizing of CMOS LC Voltage Controlled Oscillator by means of Genetic Algorithm
This paper presents an optimal design approach for a 0.35µm CMOS cross-coupled differential voltage-controlled oscillator (CMOS LC-VCO) with the aim of achieving low phase noise, high figure-of-merit (FOM), and low power consumption. To address the design challenges, a metaheuristic Genetic Algorithm (GA) is used to determine the optimal dimensions of the LC-VCO's components, specifically the channel length and width of the MOS transistors, which enable the circuit to perform at its best. The proposed LC-VCO is verified through ADS simulation software and achieves - 124dBc/Hz at 1MHz offset frequency from a carrier frequency of 2.6 GHz with a power consumption of 8 mW. A comparison with other published works is also provided to highlight the performance of the proposed design.
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