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首页> 外文期刊>Journal of computer sciences >PERFORMANCE OF TOPOLOGY AWARE RELIABLE ROUTING PROTOCOL FOR LARGE SCALE VIRTUAL PRIVATE NETWORK | Science Publications
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PERFORMANCE OF TOPOLOGY AWARE RELIABLE ROUTING PROTOCOL FOR LARGE SCALE VIRTUAL PRIVATE NETWORK | Science Publications

机译:大规模虚拟虚拟专用网的拓扑学性能可靠的路由协议|科学出版物

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> A network which merges the usage of the public and the private networks and uses security software for the purpose of compressing, encrypting and masking the digital packets that are being transmitted in the network is called as Virtual Private Network (VPN). In VPN, the communication between the user ends is maintained such that it appears as if the source end is directly linked to the destination end over a concealed leased line. The private network, VPN uses the public network such as internet to link the remote locations with the users. In this study, we propose a new reliable protocol called as Topology Aware Reliable Routing Protocol (TARRP) for large scale VPN and compare its performance with the traditional protocol, Boarder Gateway Protocol (BGP). In this protocol, the communication between the end to end nodes takes place in two phases: Routing phase and authentication phase. In the routing phase, the upstream and the downstream routing paths are determined by the source node using the topology learning protocol. Based on the dynamic failure information of links, the sender selects the failure-free path towards the destination. In the authentication phase, the VPN gateway authenticates the packet before it is transmitted through the core. Thus, this technique efficiently allows the packet to be transmitted with ensured security. By simulation results, we show that our proposed protocol is better than the traditional routing protocol of VPN.
机译: >将公共和私有网络的使用合并在一起并使用安全软件来压缩,加密和屏蔽网络中正在传输的数字包的网络称为虚拟专用网( VPN)。在VPN中,维护用户端之间的通信,以使其看起来好像源端通过隐藏的专线直接链接到目标端。 VPN是专用网络,它使用Internet等公共网络将远程位置与用户链接起来。在这项研究中,我们为大型VPN提出了一种称为拓扑感知可靠路由协议(TARRP)的新可靠协议,并将其性能与传统协议Boarder Gateway Protocol(BGP)进行了比较。在该协议中,端到端节点之间的通信分为两个阶段:路由阶段和身份验证阶段。在路由阶段,上游和下游路由路径由源节点使用拓扑学习协议确定。根据链接的动态故障信息,发送方选择通向目的地的无故障路径。在身份验证阶段,VPN网关在数据包通过核心传输之前先对其进行身份验证。因此,该技术有效地允许以确保的安全性来发送分组。仿真结果表明,本文提出的协议优于传统的VPN路由协议。

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