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RBC-OLSR: Reputation-based clustering OLSR protocol for wireless ad hoc networks

机译:RBC-OLSR:用于无线ad hoc网络的基于信誉的群集OLSR协议

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We consider the problem of assuring the trustworthiness (i.e. reliability and robustness) and prolonging the lifetime of wireless ad hoc networks, using the OLSR routing protocol, in the presence of selfish nodes. Assuring the trustworthiness of these networks can be achieved by selecting the most trusted paths, while prolonging the lifetime can be achieved by (1) reducing the number of relay nodes (MPR) propagating the topology control (TC) messages and (2) considering the residual energy levels of these relay nodes in the selection process. In this paper, we propose a novel clustering algorithm and a relay node selection algorithm based on the residual energy level and connectivity index of the nodes. This hybrid model is referred to as H-OLSR. The OLSR messages are adapted to handle the cluster heads election and the MPR nodes selection algorithms. These algorithms are designed to cope with selfish nodes that are getting benefits from others without cooperating with them. Hence, we propose an incentive compatible mechanism that motivates nodes to behave truthfully during the selection and election processes. Incentive retributions increase the reputation of the nodes. Since network services are granted according to nodes' accumulated reputation, the nodes should cooperate. Finally, based on nodes' reputation, the most trusted forwarding paths are determined. This reputation-based hybrid model is referred to as RH-OLSR. Simulation results show that the novel H-OLSR model based on energy and connectivity can efficiently prolong the network lifetime, while the RH-OLSR model improves the trustworthiness of the network through the selection of the most trusted paths based on nodes' reputations. These are the two different processes used to define the reputation-based clustering OLSR (RBC-OLSR) routing protocol.
机译:我们考虑了在存在自私节点的情况下使用OLSR路由协议来确保可信赖性(即可靠性和鲁棒性)并延长无线自组织网络寿命的问题。通过选择最受信任的路径可以确保这些网络的可信赖性,同时可以通过以下方法延长寿命:(1)减少传播拓扑控制(TC)消息的中继节点(MPR)的数量,以及(2)考虑这些中继节点在选择过程中的剩余能量水平。本文基于剩余能量水平和节点的连通性指标,提出了一种新颖的聚类算法和中继节点选择算法。该混合模型称为H-OLSR。 OLSR消息适用于处理簇头选举和MPR节点选择算法。这些算法旨在应对自私的节点,这些节点在不与他人合作的情况下从他人那里获得收益。因此,我们提出了一种激励兼容机制,该机制可以激励节点在选择和选举过程中如实表现。激励性报酬增加了节点的声誉。由于网络服务是根据节点的累积信誉授予的,因此节点应进行协作。最后,基于节点的信誉,确定最受信任的转发路径。这种基于信誉的混合模型称为RH-OLSR。仿真结果表明,基于能量和连通性的新型H-OLSR模型可以有效地延长网络寿命,而RH-OLSR模型通过根据节点信誉选择最受信任的路径来提高网络的可信度。这是用于定义基于信誉的群集OLSR(RBC-OLSR)路由协议的两个不同过程。

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