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A Coalitional Game-Based Algorithm for OFDMA Resource Allocation in Multicast Cognitive Radio Networks

机译:组播认知无线电网络中基于联盟博弈的OFDMA资源分配算法

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This letter investigates resource allocation for orthogonal frequency division multiple access (OFDMA)-based multicast cognitive radio networks (MCRNs) under the consideration of primary users' activities. Due to the heterogeneity of channel gains among secondary users (SUs), the existing multicast schemes are highly conservative and spectrally inefficient. To address this issue, we formulate a novel multicasting problem for MCRNs. This new formulation optimally and adaptively exploits multiuser diversity of OFDMA through dynamic group formation, which clusters SUs within a multicast group into multiple smaller subgroups (coalitions) based on their channel gains. Subcarriers and power are then allocated to these subgroups to maximize aggregate data rate (ADR) of the system. A coalitional game theory is adopted to model the group formation where SUs are allowed to form coalitions to compete for resources. A novel cognitive multicast coalitional game (CMCG) is proposed for SUs to self-organize to reach multi-coalitional equilibrium. where optimality can be obtained. Simulation results show that the proposed CMCG algorithm significantly improves the system ADR as compared to the conventional unicast and multicast schemes.
机译:这封信调查了主要用户的活动下基于正交频分多址(OFDMA)的多播认知无线电网络(MCRN)的资源分配。由于次要用户(SU)之间信道增益的异构性,现有的多播方案非常保守且频谱效率低下。为了解决这个问题,我们为MCRN提出了一个新颖的多播问题。此新公式通过动态组形成来优化和自适应地利用OFDMA的多用户多样性,该组将多播组中的SU分成多个较小的子组(联盟)(基于其信道增益)。然后,将子载波和功率分配给这些子组,以最大程度地提高系统的总数据速率(ADR)。采用联盟博弈理论来模拟允许SU组成联盟以竞争资源的群体形成。提出了一种新颖的认知多播联盟博弈(CMCG),供SU自我组织以达到多联盟均衡。在哪里可以获得最优性。仿真结果表明,与传统的单播和多播方案相比,所提出的CMCG算法显着改善了系统ADR。

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