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首页> 外文期刊>Optical Communications and Networking, IEEE/OSA Journal of >Performance comparison for NRZ, RZ, and CSRZ modulation formats in RS-DBS Nyquist WDM system
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Performance comparison for NRZ, RZ, and CSRZ modulation formats in RS-DBS Nyquist WDM system

机译:RS-DBS Nyquist WDM系统中NRZ,RZ和CSRZ调制格式的性能比较

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Non-return-to-zero (NRZ), carrier-suppressed return-to-zero (CSRZ), and 33% return-to-zero (RZ) are the three most commonly used modulation formats in the current fiber-optical communication system. In this paper, we investigate and comprehensively compare their performance using the recently proposed receiver side duobinary shaping Nyquist wavelength division multiplexing (RS-DBS Nyquist WDM) technique, which is believed to be one of the promising candidates in the next high-capacity, high-data-rate, long-distance optical transmission systems with its cost-effective capability. It is found that, in a scenario of 3 ?? 112 Gbps polarization division multiplexing quadrature phase-shift keying (PDM-QPSK) RS-DBS Nyquist WDM transmission, for back-to-back (B2B) transmission, NRZ can obtain almost the same performance as CSRZ and 33% RZ at the optimum bandwidth of 0.82 ?? symbol rate for optical filters at the transmitter side. However, under narrower bandwidth optical filtering, CSRZ and 33% RZ signals have advantages over NRZ signal for requiring 0.5 and 1 dB less optical signal-to-noise ratio at BER = 1 ?? 10??3 with a 0.6 ?? symbol rate bandwidth optical filter. Moreover, using the optimum optical filter, after a 1600 km single-mode fiber (SMF) transmission, the CSRZ and 33% RZ signals can achieve 0.55 and 0.7 dB Q factor improvements over NRZ signals, by taking fiber nonlinearity into account. The RZ format is more ideal for the RS-DBS Nyquist WDM system with long-haul SMF transmissions.
机译:不归零(NRZ),载波抑制归零(CSRZ)和33%归零(RZ)是当前光纤通信系统中最常用的三种调制格式。在本文中,我们将使用最近提出的接收器端双二进制整形奈奎斯特波分复用(RS-DBS奈奎斯特WDM)技术来研究和综合比较它们的性能,该技术被认为是下一个大容量,高容量的有希望的候选人之一。数据速率的长距离光传输系统,具有高性价比。发现在3 ??的情况下112 Gbps极化分割多路复用正交相移键控(PDM-QPSK)RS-DBS奈奎斯特WDM传输,对于背对背(B2B)传输,NRZ在最佳带宽下可获得与CSRZ几乎相同的性能和33%的RZ的0.82 ??发射机侧光学滤波器的符号率。但是,在较窄带宽的光滤波下,CSRZ和33%的RZ信号优于NRZ信号,因为在BER = 1 ??时,光信噪比要少0.5和1 dB 10 ?? 3和0.6 ??符号率带宽光学滤波器。此外,使用最佳光学滤波器,在传输1600 km单模光纤(SMF)之后,通过考虑光纤的非线性,CSRZ和33%的RZ信号相对于NRZ信号可以实现0.55和0.7 dB的Q因子改善。对于具有长距离SMF传输的RS-DBS Nyquist WDM系统,RZ格式更为理想。

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