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Low-Complexity Mode Selection and Resource Allocation for Energy-Efficient D2D Communications

机译:节能模式选择和节能分配用于节能D2D通信

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In this paper, the energy efficiency in a cellular network with device-to-device communications is studied. A mixed-integer max-min optimization problem is formulated with both mode selection and resource allocation. Since the optimal solution requires an exhaustive search, a low-complexity decomposition (LCD) method is derived. A fairness-aware mode selection scheme, a subcarrier assignment scheme, and a mode switching scheme are introduced and analyzed. Moreover, a novel power allocation scheme is proposed, which exploits the property of the fractional structure of the energy efficiency optimization problem over multiple subcarriers. The proposed LCD method is scalable and suitable for a large number of users and subcarriers. Simulation results demonstrate that our proposed LCD method achieves satisfactory energy efficiency performance and promotes the fairness among individual users.
机译:本文研究了具有设备到设备通信的蜂窝网络中的能效。 混合整数MAX-MIN优化问题与模式选择和资源分配一起配制。 由于最佳解决方案需要详尽的搜索,因此导出了低复杂性分解(LCD)方法。 引入和分析了公平感知模式选择方案,子载波分配方案和模式切换方案。 此外,提出了一种新的功率分配方案,其利用多个子载波的能效优化问题的分数结构的性质。 所提出的LCD方法是可扩展的,适用于大量用户和子载波。 仿真结果表明,我们所提出的LCD方法达到了令人满意的能效性能,并促进了个别用户之间的公平性。

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