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Open shortest path first (OSPF) routing protocol simulation

机译:开放式最短路径优先(OSPF)路由协议仿真

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摘要

Open Shortest Path First (OSPF) is a dynamic, hierarchical routing protocol designed to support routing in TCP/IP networks. A simulation of the OSPF Election Protocol shows three results: (1) The Designated Router (DR) can be elected in constant time. (2) If a router has a limited number of input buffers, a competition for buffers between the Election and the Flooding Protocols increases the election time and causes an oscillatory behavior.At each router, the Router-ID of the DR continuously changes causing instability. (3) In the worst case, when the DR and the BDR fail at the same time, the DR-agreement-time is bounded above by twice the HelloInterval. A simulation of the OSPF Flooding Protocol, using 20, 50 and 80 router point-to-point networks, shows three results: (1) For the 50 router network, as link speed exceeds 4000 Kbps, the probability of overflowing the input buffers increases causing retransmissions. The increase in bootup-convergence-time from retransmissions is bounded by two and three times the RxmtInterval for link speeds of 4000 to 6000 Kbps and above 50 Mbps respectively. The increase in the bootup-convergence-time is due to large number of unacknowledged flooding packets received within RxmtInterval. (2) For 20 and 50 router networks, the input buffer size has little impact on the bootup-convergence-time. For the 80 router network, a small change in the input buffer size drastically changes the bootup-convergence-time. (3) Reducing the value of the RxmtInterval lowers the bootup-convergence-time at high link speeds.
机译:开放式最短路径优先(OSPF)是一种动态的分层路由协议,旨在支持TCP / IP网络中的路由。 OSPF选举协议的仿真显示了三个结果:(1)可以在恒定时间内选举指定路由器(DR)。 (2)如果路由器的输入缓冲区数量有限,则选举和洪泛协议之间的缓冲区竞争会增加选举时间并引起振荡行为。在每个路由器上,DR的Router-ID不断变化,从而导致不稳定。 (3)在最坏的情况下,当DR和BDR同时失败时,DR协商时间的上限是HelloInterval的两倍。使用20、50和80个路由器点对点网络进行的OSPF泛洪协议的仿真显示了三个结果:(1)对于50个路由器网络,当链路速度超过4000 Kbps时,输入缓冲区溢出的可能性增加导致重传。对于链路速度分别为4000至6000 Kbps和高于50 Mbps的情况,重传启动收敛时间的增加受到RxmtInterval的两倍和三倍的限制。启动收敛时间的增加是由于在RxmtInterval内收到大量未确认的洪泛数据包所致。 (2)对于20和50个路由器网络,输入缓冲区大小对启动收敛时间几乎没有影响。对于80路由器网络,输入缓冲区大小的微小变化会极大地改变启动收敛时间。 (3)降低RxmtInterval的值可降低高速链接时的启动收敛时间。

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