首页> 外文会议>2016 1st International Workshop on Link- and System Level Simulations >Dynamic scheduling in system-level simulations for multi-hop D2D communications in LTE networks
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Dynamic scheduling in system-level simulations for multi-hop D2D communications in LTE networks

机译:LTE网络中多跳D2D通信的系统级仿真中的动态调度

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Device-to-device (D2D) communication has attracted great attention and becomes a promising technology for future wireless networks. Besides two UEs communicating directly without going through the base station, D2D communication can be further broadened to multi-hop D2D communication, for example, a UE may serve as a relay for some D2D pair. In this work, we perform system-level simulation studies on multihop D2D communications overlay LTE networks with intra-cell and inter-cell interference from other D2D transmissions. We investigate dynamic scheduling for multi-hop D2D according to instantaneous channel and interference situation based on proportional fair metrics. Dynamic scheduling is a compromise between average and edge spectral efficiency, since using relays can increase edge performance but may decrease the average spectral efficiency as they consume more resources than direct D2D. In simulation studies, we can see that multi-hop D2D with dynamic scheduling outperforms direct D2D and multi-hop D2D with fixed scheduling for large D2D distance, and also increases edge spectral efficiency dramatically for small D2D distance with the expense of a little average spectral efficiency decrease.
机译:设备到设备(D2D)通信已引起了广泛的关注,并成为未来无线网络的一项有前途的技术。除了无需通过基站直接进行通信的两个UE外,D2D通信还可以扩展为多跳D2D通信,例如,UE可以用作某些D2D对的中继。在这项工作中,我们将对多跳D2D通信覆盖LTE网络进行系统级仿真研究,同时还要考虑其他D2D传输的小区间和小区间干扰。我们根据比例公平指标,根据瞬时信道和干扰情况研究多跳D2D的动态调度。动态调度是平均和边缘频谱效率之间的折衷,因为使用中继可以提高边缘性能,但由于它们比直接D2D消耗更多的资源,因此可能会降低平均频谱效率。在模拟研究中,我们可以看到,对于大D2D距离,具有动态调度的多跳D2D优于直接D2D和具有固定调度的多跳D2D,并且对于较小的D2D距离,其边沿频谱效率也大大提高,而平均频谱却很少效率下降。

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