一种高性能模拟光传输的预失真电路设计技术

Zhanxian Xu, L. MacEachern
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引用次数: 4

摘要

在光纤无线通信系统中,为了实现所需的信号动态范围,需要一个高度线性的光发射机。为了补偿二阶和三阶激光畸变,二次律和三次律电路由于其非线性特性,通常需要工作在载流子频率的2或3倍。本文提出了一种替代设计方法,该方法使用多个槽电路来缓解带宽要求,同时提供可调性,以考虑半导体激光器的组件变化,热效应和老化。采用标准CMOS技术设计了一个工作在2ghz范围、带宽约为300mhz的激光预失真器实例。通过仿真可以得到二阶和三阶谐波失真平均降低20 ~ 30db。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A predistortion circuit design technique for high performance analogue optical transmission
In radio over fiber systems, a highly linear optical transmitter is necessary to achieve the required signal dynamic range. In order to compensate for second and third order laser distortions, quadratic and cubic law circuits are usually required to work at up to 2 or 3 times the carrier frequency due to their nonlinear property. This paper presents an alternative design approach that uses multiple tank circuits to relieve the bandwidth requirement at the same time providing tunability to account for component variation, thermal effect and aging of semiconductor lasers. A laser pre-distorter example that works at 2 GHz range with about 300 MHz bandwidth was designed using standard CMOS technology. The average reductions of 20-30 dB for the 2nd and 3rd order harmonic distortion can be obtained in simulation.
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