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Multipath Routing in Ad Hoc Wireless Networks with Omni Directional and Directional Amtenna: A Comparative Study

机译:Ad Hoc无线网络中的多路径路由与Omni定向和定向Amtenna:比较研究

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Several routing schemes have been proposed in the context of mobile ad hoc network. Some of them use multiple paths simultaneously by splitting the information among multitude of paths, as it may help to reduce end-to-end delay and perform load balancing. Multipath routing also diminishes the effects of unreliable wireless links in the constantly changing topology of ad hoc networks to a large extent. Route coupling, caused by the interference during the simultaneous communication through multiple paths between a pair of source and destination, severely limits the performance gained by multipath routing. Using node disjoint multiple paths to avoid coupling is not at all sufficient to improve the routing performance in this context. Router coupling may be reduced to a great extent if zone disjoint or even partially zone disjoint paths are used for data communication. Two paths are said to be zone disjoint if data communication through one path does not interfere with other paths. Large path length (number of hops) also contributes to the performance degradation resulting in high end to end delay. So zone disjoint shortest multipath is the best choice under high traffic condition. However, it is difficult to get zone disjoint or even partially zone disjoint multiple routes using omni-directional antenna. This difficulty may be overcome if directional antenna is used with each mobile node. In this paper, we have done a comparative study on the performance of multipath routing using omni-directional and directional antenna. The result of the simulation study clearly shows that directional antenna improves the performance of multipath routing significantly as compared to that with omni directional antenna.
机译:在移动临时网络的上下文中提出了几种路由方案。其中一些通过分割多个路径之间的信息来同时使用多个路径,因为它可能有助于降低端到端延迟并执行负载平衡。多径路由还在很大程度上减少了不可靠的无线链路在不断变化的ad hoc网络的拓扑中的影响。通过在一对源和目的地之间的多个路径同时通信期间的干扰引起的路由耦合,严重限制多径路由所获得的性能。使用节点不相交的多个路径以避免耦合并不足够以在此上下文中提高路由性能。如果区域不相交或偶数区域不相交路径用于数据通信,则可以在很大程度上减小路由器耦合。如果通过一条路径的数据通信不会干扰其他路径,则据说两个路径是区别的。大的路径长度(跳数)也有助于性能下降导致最终延迟的高端。所以区域不相交的最短多径是在高流量条件下的最佳选择。但是,使用全向天线难以获取区域不相交甚至部分区域不相交的多路由。如果与每个移动节点一起使用定向天线,则可以克服这种难度。在本文中,我们使用全方位和定向天线进行了对多路径路由性能的比较研究。仿真研究的结果清楚地表明,与OMNI定向天线相比,定向天线显着提高了多径路由的性能。

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