A distributed signaling scheme for provisioning dynamic traffic in wavelength-routed networks

K. Lu, J. Jue, Gaoxi Xiao, I. Chlamtac, T. Ozugur
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引用次数: 4

Abstract

Provisioning dynamic traffic is a major challenge in wavelength-routed networks. While the routes of connections are mainly determined by using global state information, different connections that share the same link may still compete for the same resources. These conflicts can cause significant blocking, a problem that becomes more serious as traffic becomes more dynamic and as the state information changes more frequently. Therefore, it is increasingly important to design appropriate signaling schemes to avoid blocking due to contention between different simultaneous connection requests. In this paper, we propose a new distributed signaling scheme, Intermediate-Node Initiated Reservation (IIR), for establishing dynamic lightpaths in wavelength-routed networks. In the framework of IIR, reservations may be initiated at any set of nodes along the path of a connection, and multiple wavelengths may be reserved. Two IIR implementations are designed for networks with no wavelength conversion and with sparse wavelength conversion. Extensive simulation results show that the IIR scheme outperforms the original schemes under various network and traffic conditions. Simulation results also show that the IIR scheme performs better in networks where number of wavelength per fiber is large, or in networks with sparse wavelength conversion.
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一种在波长路由网络中提供动态业务的分布式信令方案
提供动态流量是波长路由网络中的一个主要挑战。虽然连接的路由主要由全局状态信息决定,但共享同一链路的不同连接仍然可能争夺相同的资源。这些冲突可能会导致严重的阻塞,随着流量变得更加动态,状态信息变化更加频繁,这个问题会变得更加严重。因此,设计合适的信令方案以避免由于不同的并发连接请求之间的争用而导致的阻塞变得越来越重要。本文提出了一种新的分布式信令方案——中间节点初始保留(Intermediate-Node Initiated Reservation, IIR),用于在波长路由网络中建立动态光路。在IIR框架中,可以在连接路径上的任何一组节点上发起保留,并且可以保留多个波长。针对无波长转换和有稀疏波长转换的网络设计了两种IIR实现。大量的仿真结果表明,该方案在各种网络和流量条件下都优于原有方案。仿真结果还表明,该方案在每根光纤的波长数较大或波长转换稀疏的网络中具有较好的性能。
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