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首页> 外文期刊>Wireless Communications Letters, IEEE >Graph-Theory-Based Resource Allocation and Mode Selection in D2D Communication Systems: The Role of Full-Duplex
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Graph-Theory-Based Resource Allocation and Mode Selection in D2D Communication Systems: The Role of Full-Duplex

机译:基于图形理论的资源分配和模式选择在D2D通信系统中:全双工的作用

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摘要

We propose graph-theory-based mode selection and resource allocation algorithms for device-to-device (D2D) communication systems in which a full-duplex (FD) scheme can be applied. To apply FD in practice, the current half-duplex (HD) communication devices need to be upgraded to FD devices. Replacing all the devices at once, though, is undesirable; implementing FD incurs a high cost. It is prudent then to select the devices that ought to be changed first. This would ensure better performance at reducing frequency range or enhancing sum-rate. To resolve this issue, we suggest an algorithm that selects D2D pairs based on the centrality concept of graph theory. We also propose a resource allocation algorithm modified for FD-applied environments to reduce the range of frequency bands. Numerical analyses confirm that the proposed system achieves a reduction of the used frequency range as well as the theoretical maximum sum-rate performance.
机译:我们提出了基于图形理论的模式选择和资源分配算法,用于设备到设备(D2D)通信系统,其中可以应用全双工(FD)方案。为了在实践中应用FD,需要将目前的半双工(HD)通信设备升级到FD设备。但是,替换所有设备,也是不希望的;实施FD承受高成本。然后,它是谨慎的,选择首先要更改的设备。这将确保在降低频率范围或增强总和率时更好的性能。为了解决这个问题,我们建议一种基于图表理论的中心概念选择D2D对的算法。我们还提出了一种修改FD应用环境的资源分配算法,以减少频带范围。数值分析证实,所提出的系统实现了使用的频率范围的减少以及理论最大总和性能。

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