Litcius/Paper detail

Disjoint Paths Construction and Fault-Tolerant Routing in BCube of Data Center Networks

Weibei Fan, Fu Xiao, Hui Cai, Xiaobai Chen, Shui Yu

2023IEEE Transactions on Computers40 citationsDOI

Abstract

BCube is a promising structure of data center network, as it can significantly improve the performance of typical applications. With the expansion of network scale and increasement of complexity, reliability and stability of networks have become more essential. In this paper, we study the fault-tolerant routings in BCube. First, we design a fault-tolerant routing algorithm based on node disjoint multi-paths. The proposed multi-path routing has stronger fault tolerance, since each path has no other common nodes except the source node and the destination node. Second, we investigate an effective fault-tolerant routing based on routing capabilities algorithm for BCube. The proposed algorithm has higher fault tolerance and success rate of finding feasible routes, since it does not limit the faults number. Third, we present an adaptive path finding algorithm for establishing virtual links between any two nodes in BCube, which can shorten the diameter of BCube. Extensive simulation results show that the proposed routing scheme outperforms the existing popular algorithms. Compared with the state-of-the-art fault-tolerant routing algorithms, the proposed algorithm has a 21.5% to 25.3% improvement on both throughput and packet arrival rate. Meanwhile, it reduces the average latency of 18.6% and the maximum latency of 23.7% in networks.

Topics & Concepts

Computer scienceEqual-cost multi-path routingLatency (audio)Link-state routing protocolStatic routingMultipath routingComputer networkFault toleranceDistributed computingDestination-Sequenced Distance Vector routingNetwork packetGeographic routingDynamic Source RoutingRouting tableRouting protocolTelecommunicationsCloud Computing and Resource ManagementInterconnection Networks and SystemsSoftware-Defined Networks and 5G