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Power controlled system revenue maximization in large-scale heterogeneous cellular networks

机译:大规模异构蜂窝网络中的功率控制系统收入最大化

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In the heterogeneous cellular network, each mobile station perceives different channel gains to different base stations. Therefore, it is important to associate a mobile station with the right base station with transmit power control so as to achieve substantial improvement in spectrum-efficiency and energy-efficiency. Despite its importance, the problem that maximizes the overall system revenue with minimum total transmit power consumption through joint BS association and power control has remained largely unsolved for the large-scale heterogeneous cellular network, mainly due to its non-convex and combinatorial nature. To solve this problem, this paper first proposes a singlestage formulation that captures two interactive objectives, i.e., the maximization of overall system revenue and the minimization of total transmit power consumption. The single-stage optimization problem is then efficiently solved by the proposed POSEM algorithm based on the theory of coalition formation game and the idea of simulated annealing. Finally, our analysis shows that the proposed algorithm is guaranteed to converge to the global optimal solution fast.
机译:在异构蜂窝网络中,每个移动台将不同的信道增益感知到不同的基站。因此,重要的是将移动台与具有发射功率控制的右基站相关联,以便实现频谱效率和节能的大量提高。尽管重要的是,通过接合BS关联和功率控制最大限度地具有最小传输功耗的问题,并且对于大规模的异构蜂窝网络,主要是由于其非凸面和组合性质而大大未解决。为了解决这个问题,本文首先提出了一种单独的制定,其捕获了两个互动目标,即整体系统收入的最大化以及总传输功耗的最小化。基于联盟形成游戏理论的提出的POSEM算法和模拟退火的思想,通过所提出的POSEM算法有效地解决了单级优化问题。最后,我们的分析表明,所提出的算法保证快速收敛到全局最优解决方案。

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