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Method and system for 80 and 160 gigabit-per-second QRZ transmission in 100 GHz optical bandwidth with enhanced receiver performance

机译:具有增强的接收机性能的在100 GHz光带宽中每秒80和160吉比特QRZ传输的方法和系统

摘要

Optical transmitter/receivers for use in a DWDM systems are provided. Transmission of data signals in a quadrature-return-to-zero (QRZ) format achieves a data transmission rate equal to eight times a base data rate, i.e., 80 Gbps over a 100 GHz channel if the base data rate is 10 Gbps, with high non-linear performance by setting the polarization state of the data bands such that non-linear effects induced by PMD are reduced. Additionally, a transmitter achieves a transmission data rate equal to 16 times the base data rate by sharpening the QRZ pulses and interleaving pulse-sharpened QRZ data signals in the time domain, further doubling the data rate. Using counterpropagation in the transmitter, carrier signals and data signals traverse the same length of fiber, reducing fringing effects in the transmitter. Related techniques enhance reception and detection of data at high data rates. A local pulse-sharpened carrier is mixed with a QRZ data signal at a detector reducing amplification noise by a factor of two. A bi-directional Erbium-doped fiber amplifier is used to amplify a carrier signal while limiting fringing effects by sending carrier and data signals along equal optical path lengths. Non-linear effects are reduced by transmitting carrier signals in an othogonal polarization state with respect to data signals, and PMD phase noise effects are compensated for in both single channel and DWDM multi-channel systems by using delay management.
机译:提供了用于DWDM系统的光发射机/接收机。正交归零(QRZ)格式的数据信号传输实现的数据传输速率等于基本数据速率的八倍,即如果基本数据速率为10 Gbps,则在100 GHz通道上为80 Gbps,通过设置数据带的极化状态,从而降低由PMD引起的非线性效应,可以实现较高的非线性性能。另外,发射机通过在时域中锐化QRZ脉冲和交织脉冲锐化的QRZ数据信号,获得等于基本数据率16倍的传输数据速率,从而使数据速率进一步加倍。使用发射器中的反向传播,载波信号和数据信号会穿越相同长度的光纤,从而减少了发射器中的边缘效应。相关技术增强了高数据速率下数据的接收和检测。本地脉冲锐化载波在检测器处与QRZ数据信号混合,从而将放大噪声降低了两倍。双向掺Er光纤放大器用于放大载波信号,同时通过沿相等的光路长度发送载波和数据信号来限制边缘效应。通过相对于数据信号以正交极化状态传输载波信号,可以减少非线性影响,并且通过使用延迟管理,可以在单通道和DWDM多通道系统中补偿PMD相位噪声的影响。

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