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Analysis of Traffic Impact on Proposed Congestion Control Scheme in AODV

机译:ADV中提出拥堵控制方案的交通影响分析

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摘要

Congestion is a noteworthy problem in Mobile Ad hoc Network, which occurs when number of users increases and a node carries data more than its capacity. In this paper, a congestion control mechanism is suggested for the performance improvement of basic routing protocol AODV. The congestion status of a node is valuated based on parameters node queue length, channel utilization and residual node energy using fuzzy logic control. To strengthen the congestion control, an adaptive network coding mechanism is employed in case of high congestion to minimize transmissions amongst nodes. Recovery of data flow with neighbouring non-congested node is performed in case of medium congestion to avoid condition of high congestion and to reduce recovery time. Modifications are made to the AODV protocol in order to develop congestion control scheme without any additional overhead. The proposed methods are tested for different terrain areas with change in number of nodes and traffic load. The two variants of proposed protocol are simulated on Network simulator and impact of traffic on proposed schemes is investigated. The results are compared with basic AODV protocol. From simulation results, it is evident that adaptive network coding and congested link repairing method has improved scalability performance of routing protocol.
机译:拥塞是移动临时网络中的值得注意的问题,当用户数量增加并且节点超过其容量时发生的问题发生了值得注意的问题。本文提出了一种拥塞控制机制,用于基本路由协议AODV的性能改进。使用模糊逻辑控制的参数节点队列长度,信道利用率和残差节点能量,节点的拥塞状态为valbusion状态。为了加强拥塞控制,在高充血的情况下采用自适应网络编码机制,以最小化节点之间的传输。在中等拥塞的情况下执行与相邻非拥塞节点的数据流回收数据流,以避免高拥塞条件并减少恢复时间。修改是对AODV协议的修改,以便在没有任何额外开销的情况下开发拥塞控制方案。该方法对于不同地形区域进行测试,其中节点数量和交通负荷变化。在网络模拟器上模拟了所提出的协议的两个变体,并研究了在提出的方案上的影响。将结果与基本AODV协议进行比较。从仿真结果中,显而易见,自适应网络编码和拥塞链路修复方法具有改进的路由协议的可扩展性性能。

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