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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >A tradeoff between throughput and energy efficiency for D2D underlaying communication systems
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A tradeoff between throughput and energy efficiency for D2D underlaying communication systems

机译:D2D底层通信系统吞吐量与能源效率的权衡

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摘要

Device-to-device (D2D) underlaying communication systems can improve the system throughput. However, the spectrum reuse will bring the co-channel interference, which will make it difficult to improve both the energy efficiency and the system throughput. In order to balance the energy efficiency and the system throughput, this letter proposes a new resource allocation strategy. First, a mode selection scheme is proposed by delimiting the D2D interference-restricted area. Then a distance-based resource allocation method is proposed to increase the system throughput. Finally, by modifying the objective function and applying the differential evolution algorithm for power optimization, the higher energy efficiency is obtained while the system throughput approaches the maximum value. Simulation results show that compared with the traditional stochastic resource allocation scheme, the proposed scheme can improve the system throughput. Moreover, the proposed algorithm can make the system throughput close to the maxima while obtaining higher energy efficiency.
机译:设备到设备(D2D)底层通信系统可以提高系统吞吐量。然而,频谱再利用将带来共信道干扰,这将使难以提高能源效率和系统吞吐量。为了平衡能效和系统吞吐量,这封信提出了新的资源分配策略。首先,通过划定D2D干扰限制区域来提出模式选择方案。然后提出了一种基于距离的资源分配方法来提高系统吞吐量。最后,通过修改目标函数并应用差分演化算法进行功率优化,在系统吞吐量接近最大值的同时获得较高的能量效率。仿真结果表明,与传统的随机资源分配方案相比,该方案可以提高系统吞吐量。此外,所提出的算法可以使系统吞吐量接近最大值,同时获得更高的能效。

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