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The role of mobility for D2D communications in LTE-advanced networks: energy vs. bandwidth efficiency

机译:LTE先进网络中D2D通信的移动性作用:能量与带宽效率

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Energy efficiency and bandwidth efficiency are two paramount important performance metrics for device-to-device communications. In this work, we investigate how mobility impacts EE and BE in a general framework of an LTEAdvanced network. First, we deploy a simple but practical mobility model to capture the track of the mobile devices. In particular, unlike previous works focusing on mobility velocity, which is difficult to obtain in practical mobile D2D systems, we deploy the parameter of device density to describe the device mobility. Next, we investigate the relationship between EE and BE in a mobile environment, and propose an EE-BE-aware scheduling scheme with a dynamic relay selection strategy that is flexible enough for making the transmission decision, including relay selection, rate allocation, and routing. Subsequently, through rigorous theoretical analysis, we derive a precise EE-BE trade-off curve for any device density and achieve the condition to attain the optimal EE and BE simultaneously. Finally, numerical simulation results are provided to validate the efficiency of the proposed scheduling scheme and the correctness of our analysis.
机译:能源效率和带宽效率是设备到设备通信的两个至关重要的性能指标。在这项工作中,我们研究了移动性如何在LTEAdvanced网络的通用框架中影响EE和BE。首先,我们部署一个简单但实​​用的移动性模型来捕获移动设备的轨迹。尤其是,与以往关注移动速度的工作不同(在实际的移动D2D系统中很难获得),我们采用设备密度参数来描述设备的移动性。接下来,我们研究移动环境中EE与BE之间的关系,并提出一种具有动态中继选择策略的EE-BE感知调度方案,该策略足够灵活地做出传输决策,包括中继选择,速率分配和路由。随后,通过严格的理论分析,我们得出了针对任何器件密度的精确EE-BE折衷曲线,并达到了同时获得最佳EE和BE的条件。最后,提供了数值仿真结果,以验证所提出的调度方案的效率和我们分析的正确性。

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