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Congestion Game Model for Efficient Utilization of Spectrum

机译:用于高效利用频谱的拥塞游戏模型

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Dynamic spectrum access is a way of gaining access to individual frequencies on a temporary basis. This makes use of the frequency assigned to a specific user (primary user) by using specific devices and/or spectrum management techniques. The spectrum management techniques can be done by allocating the spectrum (a) through auctions (market based), (b) using management techniques (c) spectrum sharing (detects and utilizes the unutilized part of the spectrum) (d) command and control, and (e) through opportunistic spectrum access. In opportunistic spectrum access, the secondary or unlicensed user transfers the data with high speed and at short distances with tolerable interference (without disturbing) to the primary signal. Efficient spectrum allocation techniques were discussed using stochastic models, economic models, genetic algorithms, and optimization techniques. The existing models need to be tuned for better performance with optimum utilization of the power.In this paper, we proposed a model that provides access with tolerable interference from secondary users to the primary users while maximizing the spectrum utilization. Furthermore, we designed a congestion game model for efficient utilization of the spectrum by secondary users with minimum interference to primary users. The simulation results show that the congestion game model helps to utilize the spectrum efficiently.
机译:动态频谱访问是一种临时获取对各个频率的访问的方式。这将使用特定设备和/或频谱管理技术使用分配给特定用户(主要用户)的频率。可以通过使用管理技术(C)频谱共享(检测和利用频谱的未限制部分)(D)命令和控制来通过拍卖(基于市场),(B)来分配频谱(A)来完成频谱管理技术(e)通过机会主义频谱访问。在机会主义频谱访问中,辅助或未许可的用户以高速和短距离传输数据,并且可容忍的干扰(不干扰)到主要信号。使用随机模型,经济模型,遗传算法和优化技术讨论了高效的频谱分配技术。需要调整现有模型以实现更好的性能,以实现更好的性能,以优化的电量。在本文中,我们提出了一种在最大化频谱利用率的同时提供具有辅助用户的可容忍干扰的访问的模型。此外,我们设计了一个拥塞游戏模型,用于通过对主要用户的最小干扰有效利用频谱的频谱。仿真结果表明,拥塞游戏模型有助于有效利用频谱。

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