首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Analysis of second order harmonic distortion due to transmitter non-linearity and chromatic and modal dispersion of optical OFDM SSB modulated signals in SMF-MMF fiber links
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Analysis of second order harmonic distortion due to transmitter non-linearity and chromatic and modal dispersion of optical OFDM SSB modulated signals in SMF-MMF fiber links

机译:SMF-MMF光纤链路中由于发射机非线性以及光OFDM SSB调制信号的色散和模态色散引起的二阶谐波失真分析

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Single mode fibers (SMF) are typically used in Wide Area Networks (WAN), Metropolitan Area Networks (MAN) and also find applications in Radio over Fiber (RoF) architectures supporting data transmission in Fiber to the Home (FTTH), Remote Antenna Units (RAUs), in-building networks etc. Multi-mode fibers (MMFs) with low cost, ease of installation and low maintenance are predominantly (85-90%) deployed in-building networks providing data access in local area networks (LANs). The transmission of millimeter wave signals through the SMF in WAN and MAN, along with the reuse of MMF in-building networks will not levy fiber reinstallation cost. The transmission of the millimeter waves experiences signal impairments due to the transmitter non-linearity and modal dispersion of the MMF. The MMF exhibiting large modal dispersion limits the bandwidth-length product of the fiber. The second and higher-order harmonics present in the optical signal fall within the system bandwidth. This causes degradation in the received signal and an unwanted radiation of power at the RAU. The power of these harmonics is proportional to the non-linearity of the transmitter and the modal dispersion of the MMF and should be maintained below the standard values as per the international norms. In this paper, a mathematical model is developed for Second-order Harmonic Distortion (HD2) generated due to non-linearity of the transmitter and chromatic-modal dispersion of the SMF-MMF optic link. This is also verified using a software simulation. The model consists of a Mach Zehnder Modulator (MZM) that generates two mQAM OFDM Single Sideband (SSB) signals based on phase shift of the hybrid coupler (90 and 120). Our results show that the SSB signal with 120 hybrid coupler has suppresses the higher-order harmonics and makes the system more robust against the HD2 in the SMF-MMF optic link. (C) 2016 Elsevier B.V. All rights reserved.
机译:单模光纤(SMF)通常用于广域网(WAN),城域网(MAN),还可以在光纤无线电(RoF)架构中找到应用,支持光纤到家庭(FTTH),远程天线单元中的数据传输(RAU),建筑物内网络等。低成本,易于安装和维护成本低的多模光纤(MMF)主要部署在建筑物内网络中(85-90%),以提供局域网(LAN)中的数据访问。通过WAN和MAN中的SMF传输毫米波信号,以及在建筑物内使用MMF的重用不会增加光纤的安装成本。毫米波的传输由于发射器的非线性和MMF的模态色散而遭受信号损伤。表现出较大的模态色散的MMF限制了光纤的带宽长度乘积。光信号中存在的二次谐波和高次谐波落在系统带宽内。这会导致接收信号的降级以及RAU处的功率辐射。这些谐波的功率与发射器的非线性和MMF的模态色散成正比,应保持低于国际标准的标准值。本文针对由于发射机非线性和SMF-MMF光纤链路的色模色散而产生的二阶谐波失真(HD2)开发了数学模型。使用软件仿真也可以对此进行验证。该模型由一个Mach Zehnder调制器(MZM)组成,该调制器根据混合耦合器(90和120)的相移生成两个mQAM OFDM单边带(SSB)信号。我们的结果表明,带有120个混合耦合器的SSB信号抑制了高阶谐波,并使系统对SMF-MMF光纤链路中的HD2更加鲁棒。 (C)2016 Elsevier B.V.保留所有权利。

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