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Prioritized Optimal Channel Allocation Schemes for Multi-Channel Vehicular Networks

机译:多通道车载网络的优先优化通道分配方案

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The IEEE 1609.4 standard has been proposed to provide multi-channel operations in wireless access for vehicular environments (WAVE), where all channels are periodically synchronized into control and service intervals. Communication device in each vehicle will stay at the control channel for negotiation and contention during the control interval, and thereafter switch to one of the service channels for data transmission in the service interval. In this paper, based on the concept of cognitive radio (CR), the vehicles are categorized into primary providers (PPs) that intend to transmit safety-related messages and secondary providers (SPs) with non-safety information to be delivered. The prioritized optimal channel allocation (POCA) approaches are proposed to improve channel utilization of IEEE 1609.4 standard for multi-channel vehicular networks. Prioritized channel access is analyzed in the POCA schemes in order to increase the transmission opportunity of PPs. Moreover, depending on whether the CR network is distributed or centralized, the optimal channel-hopping sequence and optimal channel allocation is assigned for SPs based on dynamic programming and linear programming technique, respectively. These schemes are designed to consider optimal load balance between both channel availability and channel utilization within the throughput constraints of PPs. With the adoption of proposed POCA schemes, simulation results show that maximum throughput of SPs can be achieved with guaranteed quality-of-service requirement for PPs.
机译:已经提出了IEEE 1609.4标准,以在车辆环境(WAVE)的无线访问中提供多通道操作,在该环境中,所有通道都定期同步到控制和服务间隔中。在控制间隔期间,每辆车中的通信设备将停留在控制信道上进行协商和争用,然后在服务间隔内切换到服务信道之一以进行数据传输。在本文中,基于认知无线电(CR)的概念,将车辆分为打算传送安全相关消息的主要提供商(PP)和要传送非安全信息的次要提供商(SP)。提出了优先的最佳信道分配(POCA)方法,以提高IEEE 1609.4标准在多信道车载网络中的信道利用率。在POCA方案中分析了优先信道访问,以增加PP的传输机会。此外,取决于CR网络是分布式的还是集中式的,分别基于动态编程和线性编程技术为SP分配最优信道跳跃序列和最优信道分配。这些方案旨在在PP的吞吐量限制内考虑通道可用性和通道利用率之间的最佳负载平衡。通过采用建议的POCA方案,仿真结果表明,在保证PP的服务质量要求的情况下,可以实现SP的最大吞吐量。

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