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Infrastructure-aided hybrid routing in CR-VANETs using a Bayesian Model

机译:使用贝叶斯模型的CR-VANET中基础设施辅助的混合路由

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With long delays due to sporadic routing links in cognitive vehicular communications systems, relay node selection is one of the key design factors, as it significantly improves end-to-end delay, thereby improving overall network performance. To this end, we propose infrastructure-aided hybrid routing that uses a roadside unit (RSU) to help vehicular nodes to select idle channels and relay nodes. Channel selection is done with a belief propagation algorithm, which aggregates individual beliefs with the help of vehicles and RSUs to make a final belief, providing high accuracy in hypotheses about spectrum availability. The selection of a relay node is determined by calculating the message delivery time-the source/relay node selects the one that has the minimum message delivery time from among all the neighboring nodes. This is a hybrid (vehicle-to-vehicle and vehicle-to-RSU) communications scheme where two nodes can communicate only when they have consensus about a common idle channel. The idea is to combine cognitive capabilities with a routing technique in order to simultaneously overcome spectrum scarcity and network connectivity issues. Therefore, both dense and sparse network conditions are considered in this routing protocol for both highway and city scenarios. To enhance the stability of cognitive routing links, different functions for vehicles and RSUs are considered. We prove better performance in delay, delivery ratio, and overhead by comparing the proposed technique with two existing techniques (one dealing with, and another without, RSUs).
机译:由于认知车载通信系统中零星的路由链接而导致的长时延,中继节点的选择是关键设计因素之一,因为它显着改善了端到端时延,从而提高了整体网络性能。为此,我们提出了基础设施辅助的混合路由,该路由使用路边单元(RSU)来帮助车辆节点选择空闲信道和中继节点。信道选择通过置信传播算法完成,该算法通过车辆和RSU汇总单个置信以形成最终置信,从而在有关频谱可用性的假设中提供了很高的准确性。通过计算消息传递时间来确定中继节点的选择-源/中继节点从所有相邻节点中选择具有最小消息传递时间的节点。这是一种混合(车对车和车对RSU)通信方案,其中两个节点只有在对公共空闲信道达成共识时才能进行通信。这个想法是将认知能力与路由技术相结合,以同时克服频谱稀缺和网络连接问题。因此,对于高速公路和城市场景,此路由协议中都同时考虑了密集和稀疏的网络条件。为了增强认知路由链接的稳定性,考虑了车辆和RSU的不同功能。通过将提出的技术与两种现有技术(一种处理RSU,另一种不处理RSU)进行比较,我们证明了在延迟,传输率和开销方面的更好性能。

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