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首页> 外文期刊>Procedia Computer Science >Leveraging Seminal Protocol Stacks to Support MANETs
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Leveraging Seminal Protocol Stacks to Support MANETs

机译:利用精简协议栈支持MANET

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摘要

In this paper, we investigate the suitability of some protocol stacks (mainly the UDP/IP model) that were ?rstly proposed for wired networks, to the mobile ad hoc networks (MANETs). These latter, are known to be dynamic as the topology is constantly changing, which affects the validity of the established routes as time tics farther from the start of every routing period. In the UDP/IP model for instance, the IP layer forecasts an IP packet as soon as it receives a data unit coming from the upper layer independently of when this packet will effectively be sent by the lower layer (i.e., the underlying MAC). As such, if a newly created packet using a routing decision relative to its instant of creation, is delayed at the lower layer for some reason, it will be sent using an out of date routing decision and then will wander through established invalid routes leading to poor performances. We ?rst investigate the inherent functioning of such a model (?rstly proposed for static networks) and exhibit its drawbacks in a MANETs context. Then, we propose practical enhancements to accommodate a proper behavior suitable to dynamic networks and that ?rstly provides a priority treatment to control traffc and secondly makes the routing decisions (?lls up the IP next hop ?eld) only when the MAC is ready to handle the packet. We conducted an extensive set of simulations to compare both implementations using different load and mobility scenarios and performance metrics but the same routing protocol (OLSR). These simulations show that our proposal solves the malfunctioning of current implementations, yet it allows a better behavior of the OLSR protocol and thus more accurate network performances.
机译:在本文中,我们调查了最初为有线网络提出的某些协议栈(主要是UDP / IP模型)与移动自组织网络(MANET)的适用性。已知后者是动态的,因为拓扑结构是不断变化的,随着时间间隔距每个路由周期的起点越来越远,这将影响已建立路由的有效性。例如,在UDP / IP模型中,IP层一接收到来自上层的数据单元,便立即预测IP数据包,而与该数据包何时由下层有效发送(即底层MAC)无关。因此,如果由于某种原因而使用路由决定相对于其创建瞬间的新创建的数据包由于某种原因而在较低层被延迟,则将使用过期的路由决定将其发送,然后在建立的无效路由中徘徊,从而导致表现不佳。我们首先研究这种模型的固有功能(首先是针对静态网络提出的),并在MANETs上下文中展示其缺点。然后,我们提出实用的增强措施,以适应适合于动态网络的适当行为,并且首先提供优先级控制来控制流量,其次,仅当MAC准备就绪时才做出路由决策(填写IP下一跳字段)。处理数据包。我们进行了广泛的仿真,以比较使用不同负载和移动方案以及性能指标但使用相同路由协议(OLSR)的两种实现。这些仿真表明,我们的建议解决了当前实现的故障,但是它允许OLSR协议具有更好的行为,因此可以提供更准确的网络性能。

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