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CO-OFDM Elastic Optical Networks - Issues on Transmission, Routing, and Bandwidth Allocation

机译:CO-OFDM弹性光网络-传输,路由和带宽分配问题

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摘要

The use of orthogonal frequency division multiplexing (OFDM) technology helps an optical transmission system to break the limitation of wavelength grids by wavelength division multiplexing (WDM), in which a flexible and elastic transmission paradigm is created, so as to achieve better energy and spectrum efficiency and flexibility of the fiber resource. By jointly considering the nonlinear effect of Mach-Zehnder modulator (MZM) and amplified spontaneous emission (ASE) noise, we first provide an analytical model on the bit error rate (BER) performance for a single elastic optical transmission line. A novel adaptive transmission strategy in OFDM-based elastic optical transmission systems is proposed. Based on the adaptive transmission strategy, an optimization problem is formulated and solved via mathematical programming. By using proposed adaptive transmission strategy, the routing and bandwidth allocation (RBA) problem is formulated in elastic optical networks and numerically solved to route a set of lightpaths into a network according to the static or dynamic traffic demands with the best energy efficiency, where the laser transmit power, modulation level, number of subcarriers, and routing path of each node pair, are jointly determined. Case studies via extensive numerical experiments are conducted to verify the proposed strategy and gain better understanding on the solutions of formulated optimization problem. By further extending proposed adaptive transmission strategy, we propose a novel adaptive radio-over-fiber (RoF) transmission system for next-generation cloud radio access network (C-RAN). By considering nonlinear distortion from both MZM and high power amplifier (HPA), a 2 x 2 MIMO-OFDM baseband model for simulating the required ESNR of end-to-end RoF transmission system is developed. The RoF system for current C-RAN and proposed RoF system for future C-RAN are presented. We also propose a model to analyze the power consumption for the optical part of RoF transmission system. By performing case studies, proposed RoF system is demonstrated to be more energy efficient than current RoF system.
机译:正交频分复用(OFDM)技术的使用帮助光传输系统通过波分复用(WDM)打破了波长网格的局限性,在波分复用中创建了灵活而有弹性的传输范例,从而获得了更好的能量和频谱纤维资源的效率和灵活性。通过共同考虑Mach-Zehnder调制器(MZM)和放大的自发发射(ASE)噪声的非线性影响,我们首先提供了一条弹性光传输线的误码率(BER)性能的分析模型。提出了一种新的基于OFDM的弹性光传输系统自适应传输策略。基于自适应传输策略,通过数学程序设计并解决了优化问题。通过使用提出的自适应传输策略,在弹性光网络中制定了路由和带宽分配(RBA)问题,并对其进行了数值求解,以根据静态或动态流量需求以最佳的能量效率将一组光路路由到网络中,其中共同确定每个节点对的激光发射功率,调制级别,子载波数量和路由路径。通过大量的数值实验进行案例研究,以验证所提出的策略并更好地理解公式化优化问题的解决方案。通过进一步扩展提出的自适应传输策略,我们提出了一种用于下一代云无线电接入网(C-RAN)的新型自适应光纤无线电(RoF)传输系统。通过考虑来自MZM和高功率放大器(HPA)的非线性失真,开发了一个2 x 2 MIMO-OFDM基带模型,用于仿真端到端RoF传输系统所需的ESNR。介绍了当前C-RAN的RoF系统和未来C-RAN的拟议RoF系统。我们还提出了一个模型来分析RoF传输系统的光学部分的功耗。通过案例研究,所提出的RoF系统比当前的RoF系统具有更高的能源效率。

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  • 作者

    Wang Bo;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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