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首页> 外文期刊>IAENG Internaitonal journal of computer science >MPR Selection to the OLSR Quality of Service in MANET Using Preferred Group Broadcasting
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MPR Selection to the OLSR Quality of Service in MANET Using Preferred Group Broadcasting

机译:使用首选组广播在MANET中为OLSR服务质量选择MPR

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Optimized link state routing (OLSR) is a proactive routing protocol that works on the mobile ad hoc network (MANET) by updating information on the routing tables regularly. This protocol has characteristics namely its rapid route search, it does not require any centered setting in handling routing process, it based on multi-hop routing, and it adopts the concept of multi-point relay (MPR). However, MPR node selection in standard OLSR has not worked optimally due to the choice of two-hop neighbors for every node. Furthermore, it results in a large number of topology control (TC) messages in broadcasting neighbor nodes. To overcome problems in OLSR performance, the researcher proposed an algorithm of Preferred Group Broadcasting (PGB) to select the MPR node optimally, reducing the excessive packet redundancy, and improving the quality of service (QoS). This algorithm selects the MPR node based on the most active signal grouping in reducing the number of messages or the excessive overhead during the routing process. The results of the simulation using network simulator version two (NS-2) show that OLSR performance using PGB improves the packet delivery ratio (PDR) by 27.35% and throughput by 14.66 Kbps. It decreases the packet loss by 27.28%, delay by 3.40 milliseconds, and topology control by 22 packets compared to standard OLSR.
机译:优化链路状态路由(OLSR)是一种主动路由协议,可通过定期更新路由表上的信息在移动自组织网络(MANET)上工作。该协议具有快速路由搜索的特点,在处理路由过程中不需要任何集中设置,它基于多跳路由,并采用了多点中继(MPR)的概念。但是,由于为每个节点选择了两跳邻居,因此标准OLSR中的MPR节点选择不能达到最佳效果。此外,它在广播邻居节点中导致大量拓扑控制(TC)消息。为了克服OLSR性能中的问题,研究人员提出了一种首选组广播(PGB)算法,以最优地选择MPR节点,从而减少了过多的数据包冗余,并提高了服务质量(QoS)。该算法基于最活跃的信号分组来选择MPR节点,以减少消息数量或路由过程中的过多开销。使用第二版网络模拟器(NS-2)进行的仿真结果表明,使用PGB的OLSR性能使数据包传输率(PDR)提高了27.35%,吞吐量提高了14.66 Kbps。与标准OLSR相比,它减少了27.28%的数据包丢失,3.40毫秒的延迟和22个数据包的拓扑控制。

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