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Joint power and spectrum allocation for D2D communication overlaying cellular networks

机译:D2D通信覆盖蜂窝网络的联合功率和频谱分配

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© 2020 Elsevier B.V.Device to Device communication (D2D) for the cellular networks enables direct communication between the mobile devices that are in close proximity of each other. However, the scarce cellular spectrum for D2D in-band overlay communication must be intelligently assigned in order to optimize the overall network spectral and energy efficiency. With the help of graph theory, we demonstrate that the joint power and spectrum allocation optimization problem has an exponential time complexity that increases with the number of D2D nodes and frequency resources. We then propose an algorithm that solves the aforementioned optimization problem in two phases. The first phase performs admission control for the nodes that meet the power feasibility requirement along with the resource block assignment based on frequency reuse strategies with the aim to minimize the required frequency resources, whereas, the next phase minimizes the required transmission power of the nodes scheduled on those resource blocks while meeting the Quality of Service (QoS) requirements. We also propose several dynamic frequency reuse strategies and highlight the trade-off between spectrum and energy efficiency within an outage constraint for a given network with different service requirements and applications. The proposed strategies outperform other state-of-the-art strategies effectiveness of which is evaluated using extensive network level simulations.
机译:©2020 eleorvier b.v.device用于蜂窝网络的设备通信(D2D),可以在彼此靠近的移动设备之间直接通信。然而,必须智能地分配D2D带内覆盖通信的稀缺蜂窝频谱,以便优化整体网络谱和能量效率。在图中的帮助下,我们证明了关节电力和频谱分配优化问题具有指数时间复杂度,其随着D2D节点和频率资源的数量而增加。然后,我们提出了一种解决了两个阶段的上述优化问题的算法。第一阶段对符合功率可行性要求的节点执行频率可行性要求以及基于频率重用策略的资源块分配的节点执行准入控制,其目的是最小化所需的频率资源,而下一相最大限度地减少了所安排的节点的所需传输功率在满足服务质量(QoS)要求的同时在这些资源块上。我们还提出了多种动态频率重用策略,并在具有不同服务要求和应用程序的给定网络的中断约束中突出频谱和能量效率之间的权衡。拟议的策略优于其他最先进的战略,其有效性是使用广泛的网络级模拟进行评估的。

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