基于wbss的大规模光交叉连接动态光路网络性能研究

Hai-Chau Le, Anh-Ngoc Le, Thien Pham, Thanh Hai Dao
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引用次数: 0

摘要

在本文中,我们提出了一种基于波段选择开关(WBSS)的广义大规模光交叉连接(OXC)架构,以实现未来经济高效、带宽充裕和灵活的光网络。所开发的架构为每条输入光纤实现多个wbss和小尺寸波长选择开关(wss),用于丢弃光路,同时只需部署1´2 wss或1´2光耦合器即可实现添加功能。由于使用了更具成本效益和更简单的设备wbss,开发的体系结构可以显著减少硬件规模。然而,基于WBSS的OXC路由能力有限,这取决于内部节点参数(即每个输入光纤的WBSS数)和WBSS的频带粒度。因此,我们评估了我们开发的架构与传统的基于wss的OXC的硬件规模需求。经过验证,使用所提出的架构可以实现大量的硬件规模减少,特别是对于高端口计数的oxc或应用粗粒度的wbss时。此外,我们还评估了基于所提出的OXC的动态光网络的性能。数值模拟表明,与使用传统的基于wss的OXC网络相比,该网络以很小的性能损失为代价,提供了大量必要的硬件规模减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of Dynamic Optical Path Networks with Large-scale WBSS-based Optical Cross-connects
In this paper, we have proposed a generalized large-scale optical cross-connect (OXC) architecture utilizing waveband selective switches (WBSS) for realizing future cost-effective, bandwidth-abundant and flexible optical networks. The developed architecture implements multiple WBSSs for each incoming fiber and small size wavelength selective switches (WSSs) for dropping optical paths while simply deploying 1´2 WSSs or 1´2 optical couplers for realizing the adding function. Thanks to the use of WBSSs, which are more cost-effective and simpler devices, the developed architecture enables a significant hardware scale reduction. The WBSS-based OXC, however, suffers from a limited routing capability, which relies on the inner node parameter (i.e., the WBSS number per input fiber) and the waveband granularity of WBSSs. We, therefore, evaluate the hardware scale requirement of our developed architecture in comparison with that of conventional WSS-based OXC. It is verified that a substantial hardware scale reduction can be achieved by using the proposed architecture, especially for high port count OXCs or when applying coarser granular WBSSs. Moreover, we also assess the performance of dynamic optical networks based on the proposed OXC. Numerical simulations show that the network offers a substantial necessary hardware scale reduction at the cost of a small performance offset comparing to that of the network using conventional WSS-based OXC.
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