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Packet classification using elliptical priority scheduling in wireless local area networks for congestion avoidance

机译:在无线局域网中使用椭圆优先级调度进行数据包分类以避免拥塞

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In wireless local area networks (WLANs) packet classification is done to report matched packet to its destination node. Although several schemes are proposed, they suffer from execution corruption. In this paper initially a choleric layer is being constructed in WLANs to increase the bandwidth and performance of WLANs. We use Joint-Interface to combine all the layers. By using cross layer co-ordination among all layer is increased while comparing to the traditional layer architecture. When the packet arrives they are moved to routing table where all possible path to the nearest neighbor are found out and moved to, forwarding table which contains only the route chosen by the routing algorithm. Routing table is constructed using Ad-hoc on demand distance vector protocol. While forwarding packet, it is being double encrypted and decrypted. In order to avoid congestion occurrence near destination elliptical priority scheduling is used where time slot is given for each packet to be processed out and to send packet based on a priority algorithm are being used. Hence we can increase the classification speed and performance.
机译:在无线局域网(WLAN)中,对数据包进行分类以向其目标节点报告匹配的数据包。尽管提出了几种方案,但是它们遭受执行破坏。在本文中,最初在WLAN中构建了一个胆味层,以增加WLAN的带宽和性能。我们使用联合接口来组合所有层。与传统的层体系结构相比,通过使用跨层,可以提高所有层之间的协调性。当数据包到达时,它们被移动到路由表,在该表中找到到最近邻居的所有可能路径并被移动到转发表,该表仅包含由路由算法选择的路由。路由表是使用Ad-hoc按需距离矢量协议构造的。转发数据包时,将对其进行双重加密和解密。为了避免在目的地附近进行拥塞发生,使用椭圆优先级调度,其中为要处理的每个分组指定时隙,并使用基于优先级算法的发送分组。因此,我们可以提高分类速度和性能。

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