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Resource allocation for network-controlled device-to-device communications in LTE-Advanced

机译:LTE-Advanced中网络控制的设备到设备通信的资源分配

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Network-controlled device-to-device (D2D) communication allows cellular users to communicate directly, i.e., without passing through the eNodeB, while the latter retains control over resource allocation. This allows the same time-frequency resources to be allocated to spatially separated D2D flows simultaneously, thus increasing the cell throughput. This paper presents a framework for: (1) selecting which communications should use the D2D mode, and when, and (2) allocating resources to D2D and non-D2D users, exploiting reuse for the former. We show that the two problems, although apparently similar, should be kept separate and solved at different timescales in order to avoid problems, such as excessive packet loss. We model both as optimization problems, and propose a heuristic solution to the second, which must be solved at millisecond timescales. Simulation results show that our framework is practically viable, it avoids the problem of packet losses, increases throughput and reduces delays.
机译:网络控制的设备到设备(D2D)通信允许蜂窝用户直接通信,即无需通过eNodeB,而后者保留对资源分配的控制权。这允许将相同的时频资源同时分配给空间上分离的D2D流,从而提高了小区吞吐量。本文提出了一个框架,用于:(1)选择哪些通信应使用D2D模式,何时使用,以及(2)为D2D和非D2D用户分配资源,以充分利用前者的重用性。我们表明,这两个问题虽然看起来很相似,但应分开放置并在不同的时间范围内解决,以避免出现问题,例如过多的数据包丢失。我们将两个模型都建模为优化问题,并提出了第二种启发式解决方案,必须在毫秒级的时间内解决。仿真结果表明我们的框架实际上可行,它避免了数据包丢失的问题,增加了吞吐量并减少了延迟。

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