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Energy and Mobility Conscious Multipath Routing Scheme for Route Stability and Load Balancing in MANETsud

机译:用于MANET中路由稳定性和负载平衡的能量和移动意识多路径路由方案 ud

摘要

Mobility and limited energy resources of nodes are the most critical attributes of Mobile Ad hoc Networks (MANETs). The mobility of the nodes changes the network's topology in an unpredictable manner, which in turn, affects the stability of connected paths. In addition, it causes an excessive overhead traffic that leads to a higher energy consumption and degrades the performance of routing protocols. Therefore, a routing scheme in MANETs should comprise techniques that cope with challenges incurred by both the energy failures and node's mobility. In this paper, we proposed Multipath Battery and Mobility-Aware routing scheme (MBMA-OLSR) based on MP-OLSRv2. Specifically, the study exploits a Multi-Criteria Node Rank (MCNR) metric that comprises the residual battery energy and the speed of nodes. It aims to rank the stability of the links using a link assessment function and to select the most efficient and stable paths to the destination. Moreover, an Energy and Mobility Aware Multi-Point Relay (EMA-MPR) selection mechanism is introduced and utilized by the MBMA-OLSR to set the willingness of nodes to contribute as MPRs, for flooding topological information. We implemented the proposed scheme as an extension to the EXata network simulator. Benefits of the innovative scheme have been demonstrated and validated under various simulation scenarios based on different mobility parameters. The simulation results provided evidence of the effectiveness of our scheme, especially during the high mobility scenarios with heavy traffic load where it outperformed the conventional MP-OLSRv2 routing protocol in terms of QoS and energy related metrics.
机译:节点的移动性和有限的能源是移动自组织网络(MANET)的最关键属性。节点的移动性以不可预测的方式改变了网络的拓扑,进而影响了连接路径的稳定性。另外,这会导致过多的开销流量,从而导致更高的能耗并降低路由协议的性能。因此,MANET中的路由方案应包括应对能量故障和节点移动性所带来的挑战的技术。在本文中,我们提出了基于MP-OLSRv2的多路径电池和移动感知路由方案(MBMA-OLSR)。具体来说,这项研究利用了多标准节点等级(MCNR)度量标准,该标准包括电池剩余电量和节点速度。它旨在使用链接评估功能对链接的稳定性进行排名,并选择最有效,最稳定的到达目的地的路径。此外,MBMA-OLSR引入并利用了能量和移动感知多点中继(EMA-MPR)选择机制,以设置节点愿意充当MPR的意愿,以泛洪拓扑信息。我们将提议的方案实施为EXata网络模拟器的扩展。在基于不同移动性参数的各种模拟方案下,已经证明并验证了该创新方案的优势。仿真结果为我们的方案的有效性提供了证据,特别是在交通流量繁重的高移动性场景中,在QoS和与能源有关的指标方面,它优于传统的MP-OLSRv2路由协议。

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