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首页> 外文期刊>Communications Letters, IEEE >Low-Complexity Stackelberg Game Approach for Energy-Efficient Resource Allocation in Heterogeneous Networks
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Low-Complexity Stackelberg Game Approach for Energy-Efficient Resource Allocation in Heterogeneous Networks

机译:异构网络中低能耗资源分配的低复杂性Stackelberg博弈方法

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In this letter, we propose a low-complexity game-theoretic approach for energy-efficient resource allocation in a two-tier heterogeneous network. We measure the energy efficiency (EE) by “Revenue per Cost” in the utility domain considering both power allocation and interference coordination. Since global optimization for maximizing the overall EE is computationally expensive, we transform this nonconvex problem to a two-stage Stackelberg game inspired by fractional programming. We then employ the backward induction method and the Lagrange dual decomposition method to solve this game. An efficient iterative algorithm is designed to achieve Stackelberg equilibrium. Simulation results validate the effectiveness of the proposed approach.
机译:在这封信中,我们为两层异构网络中的节能资源分配提出了一种低复杂度的博弈论方法。考虑到功率分配和干扰协调,我们在公用事业领域中通过“每费用收入”来衡量能效(EE)。由于最大化整体EE的全局优化在计算上很昂贵,因此我们将此非凸问题转换为分数分数编程启发的两阶段Stackelberg游戏。然后,我们采用后向归纳法和拉格朗日对偶分解法来解决这个问题。设计了一种有效的迭代算法来实现Stackelberg平衡。仿真结果验证了该方法的有效性。

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