首页> 外文期刊>Optical Switching and Networking >On the effect of channel spacing, launch power, and regenerator placement on the design of mixed-line-rate optical networks
【24h】

On the effect of channel spacing, launch power, and regenerator placement on the design of mixed-line-rate optical networks

机译:信道间隔,发射功率和再生器位置对混合线速光网络设计的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Due to the increasing heterogeneity and the growing volume of traffic, telecom backbone networks are going through significant innovations. Wavelength-division multiplexed (WDM) optical networks can now cost-effectively support the growing heterogeneity of traffic demands by having mixed line rates (MLR) over different wavelength channels. The coexistence of wavelength channels with different line rates, e.g., 10/40/100 Gbps, in the same fiber brings up various design issues: in this study, we focus on (1) choice of channel spacing; (2) choice of launch power; and (3) regenerator placement. Channel spacing affects the signal quality in terms of bit-error rate (BER), and hence affects the maximum reach of lightpaths, which is a function of line rates. Various approaches to set an opportunistic width of the channel spacing can be considered, viz., (ⅰ) uniform fixed channel spacing specified by the ITU-T grid (typically 50 GHz); (ⅱ) different channel spacing for different line rates; or (ⅲ) optimal value of channel spacing for all line rates that leads to minimum cost. The launch optical power of a signal is another important parameter that affects the network cost. Adjacent channels on different line rates, especially 10 Gbps and 100 Gbps, may exhibit serious degradation of signal quality and optical reach for both the channels due to cross-phase modulation (XPM) between them. Launch power plays a role in such a scenario as it governs the BER by affecting both the signal power and the noise power due to XPM. Moreover, intelligent choice of launch powers on different line rates can significantly reduce the number of regenerators required in the network. The tradeoff between placement of regenerators and choice of launch power is an important problem to address for MLR network design. In this work, we investigate the effects of channel spacing and launch optical power by evaluating the cost of a MLR network for different values of these parameters. We also study the interplay between regenerator placement and launch power. Our results show that (a) it is possible to identify optimal values of channel spacing for a minimum-cost MLR network design, and (b) controlling the power of 10 Gbps and 100 Gbps channels shows maximum sensitivity to the network cost.
机译:由于异构性的增加和业务量的增加,电信骨干网正在经历重大的创新。现在,波分复用(WDM)光网络通过在不同波长信道上具有混合线路速率(MLR),可以经济高效地支持日益增长的流量需求异构性。在同一根光纤中,具有不同线速(例如10/40/100 Gbps)的波长信道的共存会带来各种设计问题:在本研究中,我们着重于(1)选择信道间隔; (2)发射功率的选择; (3)放置再生器。通道间隔会以误码率(BER)的形式影响信号质量,因此会影响光径的最大范围,这是线速的函数。可以考虑设置信道间隔的机会宽度的各种方法,即(ⅰ)ITU-T网格(通常为50 GHz)指定的均匀固定信道间隔; (ⅱ)不同线速的不同信道间隔;或(ⅲ)所有线路速率的最佳信道间隔值,从而可将成本降至最低。信号的发射光功率是另一个影响网络成本的重要参数。由于线路之间的交叉相位调制(XPM),不同线路速率(尤其是10 Gbps和100 Gbps)上的相邻信道可能会严重恶化两个信道的信号质量和光学范围。发射功率在这种情况下起着重要作用,因为它通过影响XPM引起的信号功率和噪声功率来控制BER。此外,明智地选择不同线路速率的发射功率可以显着减少网络中所需的再生器数量。再生器的放置与发射功率的选择之间的折衷是针对MLR网络设计要解决的重要问题。在这项工作中,我们通过针对这些参数的不同值评估MLR网络的成本来研究信道间隔和发射光功率的影响。我们还研究了再生器放置和发射功率之间的相互作用。我们的结果表明(a)可以为最小成本的MLR网络设计确定最佳的信道间隔值,并且(b)控制10 Gbps和100 Gbps信道的功率显示出对网络成本的最大敏感性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号