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What happens with a proportional fair cellular scheduling when D2D communications underlay a cellular network?

机译:当D2D通信成为蜂窝网络的基础时,按比例的公平蜂窝调度会发生什么?

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Device-to-Device (D2D) communications are seen as promising technology for future wireless systems. However, while underlying cellular networks they can negatively affect the performance of cellular communications when intra-cell spectrum sharing is enabled. The impact of D2D communications is not only seen on the cellular throughput, but also on the decision-making of the cellular scheduling policy. In this paper, we provide an impact assessment of D2D communications on the performance of Proportional Fair (PF) scheduling for a Long Term Evolution (LTE) multi-cell scenario through system-level simulations. Results show that due to excessive interference generated by D2D communications and depending on the accuracy of the link quality measure used to estimate the instantaneous data rate, a PF cellular scheduling policy may get stuck in an infinite loop and continuously selects the same User Equipments (UEs), which reduces the cellular throughput, or even approaches the performance of a Maximum Rate (MR)-based policy, thus affecting service coverage and fairness.
机译:设备到设备(D2D)通信被视为未来无线系统的有前途的技术。但是,当启用基本的蜂窝网络时,当启用小区内频谱共享时,它们可能会对蜂窝通信的性能产生负面影响。 D2D通信的影响不仅体现在蜂窝吞吐量上,而且还体现在蜂窝调度策略的决策上。在本文中,我们通过系统级仿真提供了D2D通信对长期演进(LTE)多小区方案的比例公平(PF)调度性能的影响评估。结果表明,由于D2D通信产生的过度干扰,并且取决于用于估计瞬时数据速率的链路质量度量的准确性,PF蜂窝调度策略可能陷入无限循环,并不断选择相同的用户设备(UE) ),这会降低蜂窝吞吐量,甚至接近基于最大速率(MR)的策略的性能,从而影响服务覆盖范围和公平性。

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