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首页> 外文期刊>International Journal of Distributed Sensor Networks >Novel Protocols for Improving the Performance of ODMRP and EODMRP over Mobile Ad Hoc Networks
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Novel Protocols for Improving the Performance of ODMRP and EODMRP over Mobile Ad Hoc Networks

机译:通过移动自组织网络提高ODMRP和EODMRP性能的新颖协议

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Due to its simplicity, efficiency, and robustness to mobility, the On-Demand Multicast Routing Protocol (ODMRP) becomes a standout amongst the most broadly utilized multicast routing protocols in mobile ad hoc networks (MANETs). However, the robustness of ODMRP comes at the expense of incurring a high control overhead to the network. The Enhanced ODMRP (EODMRP) proposed a dynamic refresh interval for the multicast mesh based on the network feedback on real disconnections experienced by the multicast network members. Veritably, EODMRP decreased the network control overhead at the cost of obtaining a low packet delivery ratio especially in high mobility conditions of the network. In this paper, two protocols, as improvements to both ODMRP and EODMRP, are proposed where the refresh interval is basically adapted based on the source moving speed and the number of disconnections reported by multicast members. Furthermore, we proposed an impressive local recovery to be employed in both protocols, which includes new setup and failure mechanisms that contribute effectively to boosting the performance of our proposed protocols. Since the majority of nodes in MANET rely on batteries, the main contribution of this research is to limit the amount of control information that is passed between nodes (i.e., reducing the control overhead over that in ODMRP) while maintaining a better packet delivery ratio than EODMRP.
机译:由于其简单性,效率和对移动性的鲁棒性,按需组播路由协议(ODMRP)成为移动自组织网络(MANET)中使用最广泛的组播路由协议中的佼佼者。但是,ODMRP的健壮性是以对网络造成高控制开销为代价的。增强型ODMRP(EODMRP)基于对组播网络成员所经历的实际断开的网络反馈,为组播网格提出了一个动态刷新间隔。确实,EODMRP降低了网络控制开销,但代价是获得了低的数据包传递率,尤其是在网络的高移动性条件下。本文提出了两种协议,分别是对ODMRP和EODMRP的改进,其中刷新间隔基本上是根据源移动速度和多播成员报告的断开连接数来调整的。此外,我们提议在这两种协议中采用令人印象深刻的本地恢复,其中包括新的设置和故障机制,这些机制有效地有助于提高我们提出的协议的性能。由于MANET中的大多数节点都依靠电池,因此本研究的主要贡献是限制了节点之间传递的控制信息量(即,与ODMRP相比减少了控制开销),同时保持了比EODMRP。

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