光网络技术发展趋势

M. Suzuki, T. Otani, M. Hayashi
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引用次数: 9

摘要

光层组网,如波长路由、交换、光层恢复/保护等,是未来光网络发展的主要趋势,以实现高可扩展性和生存性的光骨干网络。本文讨论了基于mems的光交换机在环形和网状网络中的光层组网。在500 km双向波长路径交换环网中,采用2D-MEMS光网络保护设备对IP层进行光层保护,实现了约20 ms的快速保护时间。所获得的开关时间与使用电开关织物的光交叉连接时间相当。针对采用通用多协议标签交换(GMPLS)协议的智能光网络,确定了基于3D-MEMS的光子交叉连接与IP/MPLS路由器之间的互连。利用包含三个光子交叉连接节点和1000公里双向传输线的GMPLS试验台,实现了快速的波长路径配置和适当的路径恢复。最后,利用GMPLS试验台验证了透明全光网络的可行性。
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Trends of optical networking technologies
Optical layer networking, such as wavelength routing, switching and restoration/protection in an optical layer is a major trend of future optical networks to achieve highly scaleable and survivable optical backbone networks. In this paper, optical layer networking using MEMS-based optical switches both for ring and mesh networks is discussed. Fast protection time of about 20 ms for IP layer has been achieved by the optical layer protection with the optical network protection equipment using a 2D-MEMS in a 500 km bidirectional wavelength path switching ring network. The obtained switching time was comparable to that of optical cross connect using electrical switching fabrics. Regarding the intelligent optical network using the generalized multi-protocol label switching (GMPLS) protocols, interworking between a photonic cross connect based on a 3D-MEMS and an IP/MPLS router has been confirmed. Fast wavelength path provisioning as well as proper path restoration has been also achieved with the GMPLS testbed including three photonic cross connect nodes and 1000 km bidirectional transmission line. Finally, the feasibility of the transparent all-optical network has been demonstrated with the GMPLS testbed.
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