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A Cognitive Based Channel Assortment Using Ant-Colony Optimized Stable Path Selection in an IoTN

机译:IoTN中使用蚁群优化稳定路径选择的基于认知的信道分类

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Routing protocols have ability to discover and maintain routes in the network. However, the efficiency of designed routing protocol depends on the node capability and application requirement. IoTN (Internet of Things Network) is being adopted into real time applications such as finding shortest path to reach destination, traffic management, rerouting path based on weather conditions, happy home architectures, weather systems and so on. Despite enormous applications of IoTN, the battery life and energy efficiency are limited to fulfil applications in IoTN. Hence the selected features for the proposed algorithm contribute towards optimizing the path to select best and least distance path to destination using ant-based system. Proposed Ant-colony optimized stable path (AOSP) selection algorithm focus on network selection stages like Selection of acquaintances, channel decisions and Energy management. Sensors can communicate with target BS (Base station) to forward or relay the data efficiently to reach server. The optimal intermediate sensors can act as cluster head and collect information from group of sensors with minimal energy spent which increase the throughput and decrease the packet dropping ratio.
机译:路由协议具有发现和维护网络中路由的能力。但是,设计的路由协议的效率取决于节点的功能和应用需求。 IoTN(物联网网络)已被用于实时应用中,例如找到到达目的地的最短路径,交通管理,基于天气条件的重新路由路径,幸福的家庭建筑,天气系统等。尽管IoTN的应用非常广泛,但电池寿命和能效仍然受到限制,无法满足IoTN中的应用。因此,所提出的算法的选定特征有助于优化路径,以使用基于蚂蚁的系统选择到达目的地的最佳和最小距离路径。拟议的蚁群优化稳定路径(AOSP)选择算法着重于网络选择阶段,例如熟人选择,渠道决策和能源管理。传感器可以与目标BS(基站)进行通信,以有效地转发或中继数据以到达服务器。最佳的中间传感器可以充当簇头,并以最小的能量消耗从传感器组收集信息,从而增加吞吐量并降低数据包丢弃率。

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