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A Novel Return-to-Zero FSK Format for 40-Gb/s Transmission System Applications

机译:适用于40 Gb / s传输系统的新型归零FSK格式

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摘要

In this paper, we present the generation, the detection and the performance evaluation of a novel return-to-zero frequency shift keying (RZ-FSK) format for 40 Gb/s transmission. Non-return-to-zero (NRZ) FSK signal is generated by using two continues-wave (CW) lasers, one Mach–Zehnder modulator (MZM) and one Mach–Zehnder delay interferometer (MZDI). A RZ-FSK signal is successfully generated by cascading a dual-arm MZM, which is driven by a sinusoidal voltage at half of the bit rate. The demodulation can be simply achieved on 1 bit rate through one MZDI or an array waveguide grating (AWG) demultiplexer with balanced detection. By numerical simulation, two types of frequency modulation schemes using MZM or PM, and impact of the frequency tone spacing (FTS) of the generated FSK signal are discussed. The proposed scheme shows that the novel frequency modulation format offers a few transmission advantages comparing with than that of the other traditional modulation formats, such as RZ and differential phase-shift keying (DPSK), under varying dispersion management. The performance analysis of RZ-FSK signal in a 4 $,{times},$40 Gb/s WDM transmission system is introduced. We experimentally demonstrate, transparent wavelength conversion based on four-wave mixing (FWM) in a semiconductor optical amplifier (SOA) and in a highly nonlinear dispersion shifted fiber (HNDSF) for a 40 Gb/s RZ-FSK signal, clearly validating the feasibility of all optical signal processing of high-speed RZ-FSK signal. Moreover, we investigate the receiver power penalty for the RZ-FSK signal after a 100 km standard single-mode fiber (SMF) transmission link with matching dispersion compensating fiber (DCF), under the post-compensation management scheme. Since the frequency modulation format is orthogonal to intensity modulation and vector modulation (polarization shift keying), it can be employed in the context of-n-n the combined modulation format to decrease the data rate or enhance the symbol rate. It can also be utilized in the orthogonal label-switching as the modulation format for the payload or the label.
机译:在本文中,我们介绍了用于40 Gb / s传输的新型归零频移键控(RZ-FSK)格式的产生,检测和性能评估。非归零(NRZ)FSK信号是通过使用两个连续波(CW)激光器,一个马赫曾德尔调制器(MZM)和一个马赫曾德尔延迟干涉仪(MZDI)生成的。通过级联双臂MZM可以成功生成RZ-FSK信号,该双臂MZM由正弦电压以比特率的一半进行驱动。通过一个MZDI或具有平衡检测功能的阵列波导光栅(AWG)多路分解器,可以简单地以1位速率实现解调。通过数值模拟,讨论了使用MZM或PM的两种频率调制方案,以及所生成的FSK信号的音调间隔(FTS)的影响。所提出的方案表明,与其他传统调制格式(例如RZ和差分相移键控(DPSK))相比,在可变色散管理下,新型频率调制格式具有一些传输优势。本文介绍了在4×40 Gb / s WDM传输系统中RZ-FSK信号的性能分析。我们通过实验证明,基于四波混频(FWM)在半导体光放大器(SOA)和高非线性色散位移光纤(HNDSF)中实现40 Gb / s RZ-FSK信号的透明波长转换,显然验证了可行性高速RZ-FSK信号的所有光信号处理。此外,在后补偿管理方案下,我们研究了具有匹配色散补偿光纤(DCF)的100 km标准单模光纤(SMF)传输链路后RZ-FSK信号的接收机功率损失。由于频率调制格式与强度调制和矢量调制(极化移位键控)正交,因此可以在组合调制格式-n-n的上下文中使用它来降低数据速率或增强符号速率。它也可以在正交标签交换中用作有效载荷或标签的调制格式。

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