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Game theoretic spectrum allocation for competing wireless access technologies to maximize the social welfare

机译:竞争性无线接入技术的博弈论频谱分配,以最大化社会福利

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摘要

Due to its scarce nature, the limited frequency spectrum must be effectively allocated to competing wireless access technologies. A promising approach is to consider frequency spectrum as a commodity and model the spectrum allocation as a market dynamics problem. Using this approach, we have addressed the competition for frequency spectrum by e.g. 3G and 4G technologies where network operators, users and the regulatory agent are the market players. We have modeled the system dynamics as a novel three-stage game creating a unified framework for spectrum allocation, network best response and user welfare. By finding the Nash equilibrium of the game, the influence of regulatory decisions and impact of network/user strategies is analyzed. Through the interaction of networks and users and influence exerted by the regulatory, the resulting spectrum allocations are proved to be Pareto efficient with maximal social welfare. The devised model and following results provides a much needed and important framework for the regulatory and network operators for adjusting spectrum allocation table towards maximizing the social welfare for all the players.
机译:由于其稀缺的性质,必须将有限的频谱有效地分配给竞争的无线接入技术。一种有前途的方法是将频谱视为一种商品,并将频谱分配建模为市场动态问题。使用这种方法,我们已经解决了频谱竞争,例如3G和4G技术,其中网络运营商,用户和监管机构是市场参与者。我们已经将系统动力学建模为一个新颖的三阶段游戏,为频谱分配,网络最佳响应和用户福利创建了一个统一的框架。通过找到游戏的纳什均衡,可以分析监管决策的影响和网络/用户策略的影响。通过网络和用户之间的互动以及监管机构施加的影响,最终频谱分配被证明是帕累托有效的,具有最大的社会福利。所设计的模型和后续结果为监管机构和网络运营商提供了迫切需要的重要框架,可用于调整频谱分配表以最大程度地提高所有参与者的社会福利。

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