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Load-Balanced IP Fast Failure Recovery

机译:负载均衡的IP快速故障恢复

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摘要

As a promising approach to improve network reliability, Proactive Failure Recovery (PFR) re-routes data traffic to backup paths without waiting for the completion of routing convergence after a local link failure. However, the diverted traffic may cause congestion on the backup paths if it is not carefully split over multiple paths according to their available capacity. Existing approach assigns new link weights based on links' load and re-calculates the routing paths, which incurs significant computation overhead and is susceptible to route oscillations. In this paper, we propose an efficient scheme for load balancing in PFR. We choose an adequate number of different types of loop-free backup paths for potential failures, and once a failure happens, the affected traffic is diverted to multiple paths in a well balanced manner. We formulate the traffic allocation problem as a tractable linear programming optimization problem, which can be solved iteratively and incrementally. As a result, only the flows affected by the failures are re-allocated to backup paths incrementally without disturbing flows not directly affected by the failures. Simulation results show that our scheme is computationally efficient, can effectively balance link utilization in the network, and can avoid route oscillations.
机译:作为提高网络可靠性的一种有前途的方法,主动故障恢复(PFR)将数据流量重新路由到备份路径,而无需等待本地链路发生故障后完成路由收敛。但是,如果未根据可用容量将流量分流到多个路径上,则可能导致备份路径拥塞。现有方法基于链路的负载分配新的链路权重并重新计算路由路径,这会产生大量的计算开销,并且容易受到路由振荡的影响。在本文中,我们提出了一种有效的PFR负载平衡方案。我们为潜在的故障选择了足够数量的不同类型的无环备份路径,一旦发生故障,受影响的流量将以均衡的方式转移到多个路径。我们将交通分配问题表述为可处理的线性规划优化问题,可以迭代和逐步解决。结果,仅将受故障影响的流递增地重新分配到备份路径,而不会干扰不受故障直接影响的流。仿真结果表明,该方案计算效率高,可以有效平衡网络中的链路利用率,并且可以避免路由振荡。

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