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Opportunistic Spectrum Access for CR-VANETs: A Game-Theoretic Approach

机译:CR-VANET的机会频谱接入:一种博弈论方法

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摘要

In this paper, we investigate the opportunistic spectrum access for cognitive radio vehicular ad hoc networks. The probability distribution of the channel availability is first derived through a finite-state continuous-time Markov chain, jointly considering the mobility of vehicles and the spatial distribution and temporal channel usage pattern of primary transmitters. Utilizing the channel availability statistics, we propose a game-theoretic spectrum access scheme for vehicles to opportunistically access licensed channels in a distributed manner. In particular, the spectrum access process is modeled as a noncooperative congestion game. The existence of the Nash equilibrium (NE) is proved, and its efficiency is analyzed when employing the uniform medium access control protocol and slotted ALOHA, respectively. Furthermore, a spectrum access algorithm is devised to achieve a pure NE with high efficiency and fairness. Simulation results validate our analysis and demonstrate that the proposed spectrum access scheme can achieve higher utility and fairness, compared with a random access scheme.
机译:在本文中,我们研究了认知无线电车辆自组织网络的机会频谱接入。首先通过有限状态连续时间马尔可夫链得出信道可用性的概率分布,同时考虑车辆的机动性以及主要发射机的空间分布和时间信道使用模式。利用信道可用性统计数据,我们为车辆提出了一种博弈论的频谱访问方案,以机会主义的方式以分布式方式访问许可的信道。特别地,频谱访问过程被建模为非合作拥塞博弈。证明了纳什均衡(NE)的存在,并分别采用统一媒体访问控制协议和带时隙的ALOHA分析了其效率。此外,设计了频谱接入算法以实现高效且公平的纯NE。仿真结果验证了我们的分析结果,并表明与随机接入方案相比,所提出的频谱接入方案可以实现更高的实用性和公平性。

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