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A novel scheme to suppress the third-order intermodulation distortion based on dual-parallel Mach-Zehnder modulator

机译:基于双并行马赫曾德尔调制器的抑制三阶互调失真的新方案

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摘要

A scheme to enlarge the spurious free dynamic range (SFDR) of the microwave photonic link is proposed based on a dual-parallel Mach-Zehnder modulator (DPMZM). By properly adjusting the phase of the RF signals and the bias voltages of the DPMZM, the second-order spurious components in the optical carrier band (OCB) of the two sub-MZMs can be canceled out completely, and the third-order and fifth-order spurious components in the first-order upper sideband (1-USB) produced by one sub-MZM have equal amplitude but phase difference with the other sub-MZM. Therefore, as the two optical beams are combined at the output of the DPMZM and the OCB and the 1-USB are abstracted by a bandpass filter to generate the transmitted signal, all the major optical spurious components that contribute to the third-order intermodulation distortion (IMD3) are canceled out. Theoretical analysis and simulation results show that the proposed scheme, without digital linearization and other optical processor, can suppress IMD3 approximately 30 dB and improve the SFDR by compared with the conventional quadrature biased MZM system.
机译:提出了一种基于双并行马赫曾德尔调制器(DPMZM)的扩大微波光子链路无寄生动态范围(SFDR)的方案。通过适当调整RF信号的相位和DPMZM的偏置电压,可以完全抵消两个子MZM的光载波带(OCB)中的二阶杂散分量,从而实现三阶和五阶一个子MZM产生的一阶上边带(1-USB)中的三阶杂散分量具有相等的振幅,但与另一个MZM产生相位差。因此,当两个光束在DPMZM的输出处合并,并且OCB和1-USB被带通滤波器抽象以生成传输信号时,所有造成三阶互调失真的主要光学杂散分量(IMD3)被取消。理论分析和仿真结果表明,与传统的正交偏置MZM系统相比,该方案无需数字线性化和其他光学处理器,可以将IMD3抑制约30 dB,并改善SFDR。

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