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Adaptive Compensation of Bandwidth Narrowing Effect for Coherent In-Phase Quadrature Transponder through Finite Impulse Response Filter

机译:通过有限脉冲响应滤波器的相干相位正交应答器的带宽缩小效果的自适应补偿

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摘要

Coherent in-phase quadrature (IQ) transponders are ubiquitous in the long-haul and the metro optical networks. During the transmission, the coherent signal experiences a bandwidth narrowing effect after passing through multiple reconfigurable optical add-drop multiplexers (ROADMs). The coherent signal also experiences a bandwidth narrowing effect when electrical or optical components of the coherent IQ transponder experience aging. A dynamic method to compensate the bandwidth narrowing effect is thus required. In the coherent optical receiver, signal bandwidth is estimated from the raw analog-to-digital converter (ADC) outputs. By adaptively adjusting the tap coefficients of the finite impulse response (FIR) filter, simple post-ADC FIR filters can increase the resiliency of the coherent signal to the bandwidth narrowing effect. The influence of chromatic dispersion, polarization mode dispersion, and polarization dependent loss are studied comprehensively. Furthermore, the bandwidth information of the transmitted analog signal is fed back to the coherent optical transmitter for signal optimization, and the transmitter-side FIR filter thus changes accordingly.
机译:连贯的相位正交(IQ)转发器在长途和地铁光网络中普遍存在。在传输期间,相干信号经历通过多个可重构光学添加多路复用器(Roadms)之后的带宽缩小效果。当相干智商转发器经历老化的电气或光学组件时,相干信号还经历带宽缩小效果。因此需要一种补偿带宽缩小效果的动态方法。在相干光接收器中,从原始模数转换器(ADC)输出估计信号带宽。通过自适应地调整有限脉冲响应(FIR)滤波器的抽头系数,简单的ADC后FIR滤波器可以增加相干信号的弹性与带宽缩小效果。全面研究了色散,偏振模式分散和极化依赖性损失的影响。此外,发送的模拟信号的带宽信息被馈送回相干光发射器以进行信号优化,并且变送器侧FIR滤波器因此相应地改变。

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