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QoS-based on-demand segmented backup routing in mobile ad hoc networks

机译:基于QoS的按需分段备份路由在移动临时网络中的备份路由

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Several real-time applications (e.g., video conferencing, remote control systems) demand guarantees on the message delivery latency. Supporting these QoS connections requires the existence of a routing mechanism, which computes paths that satisfy QoS delay constraints (e.g., end-to-end delays or failure recovery delays). In mobile ad hoc network, wireless links tend to frequently fail as nodes move in and out of transmission range of one another. Providing fault tolerance with QoS guarantees in such a network is challenging. The proposed new algorithm, also called a segmented backup routing (SBR), constructs a set of segmented backup paths. Each segmented backup path, protects a segment of the primary path rather than the entire path. The most important points that are made in this algorithm are two. First, one is able to identify backup paths for any selected primary path, as long as there exists a pair of node disjoint paths from source to destination. In other words, if there are two node disjoint paths, one is not forced to use either of them to be the primary path. This has the advantage that the primary path may be selected based on QoS considerations rather than a consideration of fault tolerance. The second advantage is that there are multiple backup paths, each of which protects breakdown of one or more nodes on the primary path. A backup path may be selected based on QoS considerations. In this paper, we have primarily focused on end-to-end delay as the QoS parameter. We apply our scheme to the AODV protocol.
机译:几个实时应用程序(例如,视频会议,远程控制系统)需求保证在消息传递延迟上保证。支持这些QoS连接需要存在路由机制,其计算满足QoS延迟约束的路径(例如,端到端延迟或故障恢复延迟)。在移动临时网络中,无线链路往往会频繁失败,因为节点移动进出彼此的传输范围。在这种网络中提供与QoS保证的容错是具有挑战性的。提出的新算法也称为分段备份路由(SBR),构建一组分段备份路径。每个分段备份路径,保护主路径的段而不是整个路径。本算法中最重要的点是两个。首先,可以识别任何所选主路径的备份路径,只要存在从源到目的地的一对节点不相交的路径。换句话说,如果有两个节点不相交路径,则不会强制使用它们中的任何一个是主要路径。这具有以下优点:可以基于QoS注意事项而不是考虑容错来选择主要路径。第二个优点是存在多个备份路径,每个备用路径都保护主路径上的一个或多个节点的故障。可以基于QoS注意事项选择备份路径。在本文中,我们主要专注于端到端延迟作为QoS参数。我们将计划应用于AODV协议。

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