A Routing Protocol for Delay-Sensitive Applications in Mobile Ad Hoc Networks

Rakesh Kumar, M. Misra, A. Sarje
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引用次数: 11

Abstract

The Ad hoc On Demand Distance Vector (AODV) routing protocol is intended for use by mobile nodes in ad hoc networks. To provide quality of service, extensions can be added to the messages used during route discovery. These extensions specifythe service requirements which must be met by nodes rebroadcasting a route request (RREQ) or returning a route reply (RREP) for a destination. In order to provide quality delivery to delay sensitive applications such as voice and video, it is extremely important that mobile ad hoc networks provide quality of service (QoS) support in terms of bandwidth and delay. In spite of using IEEE 802.11 as medium access control (MAC), most of the ad hoc routing protocols do not consider contention time which occurs in the medium reservation. Large contention times can be more critical than hop counts in determining the end-to-end delay. Most existing routing protocols for mobile ad hoc networks are designed to search for the shortest path with minimum hop counts. However, the shortest routes do not always provide the best performance, especially when there are congested nodes along these routes. In this paper we propose an on demand delay based quality of service (QoS) routing protocol (AODV-D) to ensure that delay does not exceed a maximum value for mobile ad hoc networks. This protocol will take into consideration MAC layer channel contention information and the number of packets in the interface queue in addition to minimum hops.
移动Ad Hoc网络中时延敏感应用的路由协议
自组织按需距离矢量(AODV)路由协议旨在由自组织网络中的移动节点使用。为了提供高质量的服务,可以将扩展添加到路由发现期间使用的消息中。这些扩展指定了服务需求,这些服务需求必须由重广播路由请求(RREQ)或为目的地返回路由应答(RREP)的节点来满足。为了向对延迟敏感的应用(如语音和视频)提供高质量的传输,移动自组织网络在带宽和延迟方面提供服务质量(QoS)支持是极其重要的。尽管使用IEEE 802.11作为介质访问控制(MAC),但大多数自组织路由协议都不考虑发生在介质保留中的争用时间。在确定端到端延迟时,较大的争用时间可能比跳数更为关键。大多数现有的移动自组织网络路由协议都被设计为寻找跳数最少的最短路径。然而,最短的路由并不总是提供最好的性能,特别是当这些路由上有拥塞的节点时。本文提出了一种基于按需延迟的服务质量(QoS)路由协议(AODV-D),以确保移动自组织网络的延迟不超过最大值。该协议除了考虑最小跳数外,还将考虑MAC层通道竞争信息和接口队列中的数据包数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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