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Numerical analysis on fiber-nonlinearity compensation for 4ASK 100-km SSMF transmission by using electrical butterfly operation for received signal sidebands

机译:使用电蝶形扫描对接收信号边带的纤维 - 非线性补偿光纤 - 非线性补偿的数值分析

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We investigated a novel demodulation technology based on our proposed electrical butterfly operation scheme which compensates for optical nonlinear distortion of conventional single-sideband (SSB) signals. In the scheme, phase-conjugated twin signals are transmitted as lower sideband (LSB) and upper sideband (USB) components of a dual sideband (DSB) signal modulated by a simple Mach-Zehnder modulator (MZM). The performance was evaluated by numerical simulation of 4-ary amplitude shift keying (4ASK) signals transmitted over a 100-km standard single mode fiber (SSMF). The error vector magnitude (EVM) was improved by about 20% when the input power was 10dBm, compared with a conventional SSB-4ASK signal.
机译:我们根据我们所提出的电蝶形操作方案调查了一种新型解调技术,该方法补偿了传统单边带(SSB)信号的光学非线性变形。 在该方案中,相位缀合的双信号通过简单的Mach-Zehnder调制器(MZM)调制的双边带(DSB)信号的较低边带(LSB)和上边带(USB)组件发送。 通过通过100km标准单模光纤(SSMF)传输的4-ary幅度移位键控(4ASK)信号的数值模拟来评估性能。 与传统的SSB-4ASK信号相比,当输入功率为10dBm时,误差向量幅度(EVM)提高了约20%。

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