A multipath AODV routing protocol in mobile ad hoc networks with SINR-based route selection

Jiwon Park, S. Moh, I. Chung
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引用次数: 62

Abstract

This paper proposes a multipath routing protocol called cross-layered multipath AODV (CM-AODV), which selects multiple routes on demand based on the signal-to-interference plus noise ratio (SINR) measured at the physical layer. Note that AODV (ad hoc on-demand distance vector) is one of the most popular routing protocols for mobile ad hoc networks. Each time a route request (RREQ) message is forwarded hop by hop, each forwarding node updates the route quality which is defined as the minimum SINR of serialized links in a route and contained in the RREQ header. Compared to the conventional multipath version of AODV protocol (which is called AOMDV), CM-AODV assigns the construction of multiple paths to the destination node and makes it algorithmically simple, resulting in the improved performance of packet delivery and the less overhead incurred at intermediate nodes. Our performance study shows that CMAODV significantly outperforms AOMDV in terms of packet delivery ratio and average end-to-end delay, but results in up to 45 percent less routing overhead.
基于sinr路由选择的移动自组织网络中的多路径AODV路由协议
本文提出了一种基于物理层测得的信噪比(SINR)按需选择多条路由的多径路由协议——跨层多径AODV (CM-AODV)。注意,AODV(自组织按需距离矢量)是移动自组织网络中最流行的路由协议之一。每次RREQ (route request)报文逐跳转发时,每个转发节点都会更新路由质量。路由质量定义为路由中串行链路的最小SINR,包含在RREQ报头中。与传统的AODV协议的多路径版本(称为AOMDV)相比,CM-AODV将多条路径的构造分配给目的节点,算法简单,从而提高了数据包的传输性能,减少了中间节点的开销。我们的性能研究表明,CMAODV在分组传送率和平均端到端延迟方面明显优于AOMDV,但路由开销减少了45%。
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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