We analyzed the characteristics of cross-modulations (XM) and their recovery times in a semiconductor optical amplifier by a newly-developed TMM. The calculated results suggest faster recovery of the XMs by introducin...We analyzed the characteristics of cross-modulations (XM) and their recovery times in a semiconductor optical amplifier by a newly-developed TMM. The calculated results suggest faster recovery of the XMs by introducing a high-power assist light.展开更多
Wimax系统物理层采用了先进的正交频分复用(OFDM,Orthogonal Frequency Division Multiplex)技术,从而对射频链路的设计提出了更高的要求。采用ADS和Matlab仿真工具,定量的分析了射频参数对系统性能的影响。分析了三阶交调失真及误差矢...Wimax系统物理层采用了先进的正交频分复用(OFDM,Orthogonal Frequency Division Multiplex)技术,从而对射频链路的设计提出了更高的要求。采用ADS和Matlab仿真工具,定量的分析了射频参数对系统性能的影响。分析了三阶交调失真及误差矢量幅度(EVM)计算方法,通过调整ADS中放大器模型的三阶参数,分别计算了QPSK1/2、16QAM1/2、64QAM2/3三种编码调制方式下不同的三阶交调失真对EVM的影响,得出了EVM与IM3的关系曲线,最后结合802.16e中对OFDMA发射链路EVM的技术要求,给出了系统实现中射频的三阶交调失真指标的推荐值。展开更多
文摘We analyzed the characteristics of cross-modulations (XM) and their recovery times in a semiconductor optical amplifier by a newly-developed TMM. The calculated results suggest faster recovery of the XMs by introducing a high-power assist light.
文摘Wimax系统物理层采用了先进的正交频分复用(OFDM,Orthogonal Frequency Division Multiplex)技术,从而对射频链路的设计提出了更高的要求。采用ADS和Matlab仿真工具,定量的分析了射频参数对系统性能的影响。分析了三阶交调失真及误差矢量幅度(EVM)计算方法,通过调整ADS中放大器模型的三阶参数,分别计算了QPSK1/2、16QAM1/2、64QAM2/3三种编码调制方式下不同的三阶交调失真对EVM的影响,得出了EVM与IM3的关系曲线,最后结合802.16e中对OFDMA发射链路EVM的技术要求,给出了系统实现中射频的三阶交调失真指标的推荐值。