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Design of the Next Generation Cognitive Mobile Ad Hoc Networks

机译:下一代认知移动自组织网络的设计

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Cognition capability has been seen by researchers as the way forward for the design of next generation of Mobile Ad Hoc Networks (MANETs). The reason why a cognitive paradigm would be more suited to a MANET is because MANETs are highly dynamic networks. The topology may change very frequently during the operation of a MANET. Traffic patterns in MANETs can vary from time to time depending on the need of the users. The size of a MANET and node density is also very dynamic and may change without any predictable pattern. In a MANET environment, most of these parameters may change very rapidly and keeping track of them manually would be very difficult. Previous studies have shown that the performance of a certain routing approach in MANETs is dependent on the size of the network and node density. The choice of whether to use a reactive or proactive routing approach comes down to the network size parameter. Static or offline approaches to fine tune a MANET to achieve certain performance goals is hence not very productive as a lot of these parameters keep changing during the course of operation of MANETs. Similarly, the performance of MANETs would improve greatly if the MAC layer entity could operate in a more flexible manner, hi this paper we propose a cognitive MANET design that will ensure that all these dynamic parameters are automatically monitored and decisions are based on the current status of these parameters.
机译:研究人员已经将认知能力视为下一代移动自组织网络(MANET)设计的前进方向。认知范式更适合MANET的原因是因为MANET是高度动态的网络。在MANET操作期间,拓扑可能会非常频繁地更改。 MANET中的流量模式可能会不时变化,具体取决于用户的需求。 MANET的大小和节点密度也非常动态,并且可能会变化,而不会出现任何可预测的模式。在MANET环境中,大多数这些参数可能会非常快速地更改,因此手动跟踪它们非常困难。先前的研究表明,MANET中某种路由方法的性能取决于网络的大小和节点密度。使用反应式还是主动式路由方法的选择取决于网络规模参数。因此,静态或离线方法对MANET进行微调以实现某些性能目标的效率不高,因为许多这些参数在MANET操作过程中不断变化。同样,如果MAC层实体可以以更灵活的方式运行,则MANET的性能将大大提高。在本文中,我们提出了一种认知MANET设计,该设计将确保自动监控所有这些动态参数,并根据当前状态做出决策这些参数。

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