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A Mean-Field Game Approach for Distributed Interference and Resource Management in Heterogeneous Cellular Networks

机译:异构蜂窝网络中分布式干扰和资源管理的平均场博弈方法

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Intercell interference has been known as a crucial issue in heterogeneous networks where different transmitter-receiver pairs compete for system resources. We solve this problem in two steps. We firstly assign the macrocell user with the optimum number of subchannels, which just guarantee the required quality of service. Then, the remaining subchannels are left to be shared by a large number of small cells using mean field game theory, which is proved to be more tractable than conventional game theory. Using recent advances of mean field approximation techniques, we convert the entangled traditional game of small cells system into a mean-field game where resources allocation is much easier and simpler. With different network topologies, simulation results show the effectiveness of our proposed scheme.
机译:小区间干扰是异构网络中的一个关键问题,在异构网络中,不同的发射机-接收机对竞争系统资源。我们分两步解决这个问题。我们首先为宏小区用户分配最优的子信道数,这恰好保证了所需的服务质量。然后,利用平均场博弈理论,将剩余的子信道留给大量的小单元共享,这被证明比传统博弈理论更容易处理。利用平均场近似技术的最新进展,我们将纠缠的传统小细胞系统博弈转化为平均场博弈,其中资源分配更加容易和简单。在不同的网络拓扑下,仿真结果表明了该方案的有效性。

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