减少IBWR交换机的包序性能损失

J. Veiga-Gontán, P. Pavón-Mariño, J. García-Haro
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引用次数: 1

摘要

如文献[1]所述,在(i)同步光分组交换(OPS)、(ii)散射波长路径(SCWP)工作模式和(iii)固定分组大小下工作的开槽输入缓冲波长路由(IBWR)交换机中,可以通过使用并行迭代调度程序来保持分组顺序。所获得的性能与理想的输出缓冲架构相当,仅在高输入负载时才会下降。[1]中的调度器维护每个输入-输出光纤对之间的数据包顺序。在基于虚拟电路的网络中,同一流量连接中的数据包必须保持分组顺序。在同一输入-输出光纤对中的所有包之间保持包的顺序是一个非常困难的约束。但是,它通常用于简化调度器设计。本文研究了软化排序约束,并且只应用于属于同一流量连接的数据包之间的OI-PDBM调度程序所获得的性能改进。假定GMPLS (generalized multiprotocol label switching,通用多协议标签交换)控制平面,通过存储在包头中的标签信息来识别包流。讨论了开关调度程序的可行性。
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Reduction of packet order performance penalty in IBWR switches
Packet order in slotted input buffer wavelength routed (IBWR) switches, operating under (i) synchronous optical packet switching (OPS), (ii) scattered wavelength path (SCWP) operational mode and (iii) fixed packet size, can be preserved by using a parallel iterative scheduler, as discussed in reference [1]. The performance achieved is comparable to the ideal output buffering architecture, degrading only for high input loads. The scheduler in [1] maintains packet order among every input fiber-output fiber pair. In virtual circuit-based networks, packet order has to be maintained among packets in the same traffic connection. Maintaining packet sequence among all packets in the same input fiber-output fiber pair is a constraint excessively hard. However, it is commonly used to simplify the scheduler design. This paper studies the performance improvement obtained in the OI-PDBM scheduler, if the ordering constrained is softened, and applied only among packets belonging to the same traffic connection. A GMPLS (generalized multiprotocol label switching) control plane is assumed, so that packet flow is identified by tagging information stored in packet header. A discussion regarding switch scheduler feasibility is also included.
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