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A modified 160 Gbit/s OTDM system based on QPSK Nyquist pulses and coherent detection

机译:基于QPSK Nyquist脉冲和相干检测的修改的160 Gbit / s OTDM系统

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摘要

In this paper, we design and implement a 160 Gbit/s orthogonal time division multiplexing (OTDM) transmission system based on quadrature phase shift keying (QPSK) Nyquist pulses and coherent detection. We proposed an optimized Nyquist pulses generation scheme, which produce ultra-flat frequency combs with near-perfect rectangular spectrum and high suppression of out-of-band components by two cascaded Lithium Niobate Mach Zehnder modulators (LN-MZMs). Divided by variable length of optical delay line (Odl), 10GBaud QPSK Nyquist pulses are multiplexed to 80GBaud in a single wavelength. A set of training sequence (TS) which are inserted in front of data are employed to realize the inclusion of optical phase-locking and estimate channel transmission function. In this scheme, we make use of the TS overhead to achieve homodyne detection synchronization between local advanced receiver and Nyquist-pulses generator which is controlled by loop digital signal processing (DSP) module via an optical phase-locking loop. Meanwhile, for the advantage of the TS scheme and DSP, the Nyquist system compensates the residual physical dispersion and improves the transmission quality after 150 km transmission.
机译:在本文中,我们设计并实现了基于正交相移键控(QPSK)奈奎斯特脉冲和相干检测的160Gbit / s正交时分复用(OTDM)传输系统。我们提出了一种优化的奈奎斯特脉冲产生方案,它通过两个级联锂铌酸锂马赫Zehnder调节剂(LN-MZMS)产生近乎完美的矩形谱和高抑制带外部部件的超扁平频率梳理。除以可变长度的光学延迟线(ODL),10GBaud QPSK Nyquist脉冲在单个波长中被复用到80gBaut。采用一组插入数据前面的训练序列(TS)来实现光学相位锁定和估计信道传输功能的包含。在该方案中,我们利用TS开销来实现由循环数字信号处理(DSP)模块通过光相位锁定环路控制的本地高级接收器和奈奎斯特 - 脉冲发生器之间的岩体检测同步。同时,对于TS方案和DSP的优点,奈奎斯特系统补偿了残留物理色散,并在150公里传输后提高了传输质量。

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