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Performance analysis of 112 Gb/s×4-channel WDM PDM-DQPSK optical label switching system with spectral amplitude code labels

机译:具有频谱幅度代码标签的112 Gb / s×4通道WDM PDM-DQPSK光学标签交换系统的性能分析

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We present the performance analysis of 112 Gb/s×4 wavelength division multiplexing (WDM) 100 GHz channel spacing polarization division multiplexed-differential quadrature phase shift keying (PDM-DQPSK) optical label switching system with frequency swept coherent detected spectral amplitude code labels. Direct detection is chosen to demodulate the payload by applying a polarization tracker, while 4-bits of 156 Mb/s spectral amplitude code label is coherently detected with a scheme of frequently-swept coherent detection. We optimize the payload laser linewidth as well as the frequency spacing between the payload and label. The label and payload signal performances are assessed by the eye-diagram opening factor (EOF) and bit-error rate (BER) at 10–9 as a function of the received optical power (ROP) and the optical signal to noise ratio (OSNR). The payload could well be demodulated after 900 km at a bit error rate of 10?3 using forward error correction (FEC).
机译:我们介绍了具有频率扫描相干检测频谱幅度代码标签的112 Gb / s×4波分复用(WDM)100 GHz通道间隔偏振分复用多路正交相移键控(PDM-DQPSK)光学标签交换系统的性能分析。选择直接检测以通过应用极化跟踪器对有效载荷进行解调,同时通过频繁扫描的相干检测方案来相干检测4位156 Mb / s频谱幅度代码标签。我们优化了有效载荷激光线宽以及有效载荷和标签之间的频率间隔。标签和有效载荷信号的性能是根据10-9的眼图张开系数(EOF)和误码率(BER)来评估的,它是接收光功率(ROP)和光信噪比(OSNR)的函数)。使用前向纠错(FEC),可以在900 km之后以10?3的误码率对有效载荷进行解调。

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