5g底层网络的毫米波e波段D2D通信:功率分配对D2D和蜂窝用户吞吐量的影响

Zeineb Guizani, N. Hamdi
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引用次数: 23

摘要

人们对毫米波(mmWave)技术和设备对设备(D2D)通信寄予厚望,以充分利用第五代(5G)系统的容量和频谱效率。在这种情况下,我们实施了一种资源分配方案,旨在使D2D通信在e波段的蜂窝网络底层实现。该方案旨在提高系统吞吐量,并减轻D2D对密集网络所带来的干扰,这些网络共享和重用蜂窝用户的相同资源块。我们给出了优化问题的一个公式,并指出了它的np -硬度。我们的资源重用解决方案有很多优点,因为它设法提高了整个系统的吞吐量,并在减轻干扰方面取得了显著的成果。此外,我们还揭示了当用户终端和设备终端的发射功率都增加时,系统是如何演变的。
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mmWave E-band D2D communications for 5G-underlay networks: Effect of power allocation on D2D and cellular users throughputs
High expectations are tied to the millimeter wave (mmWave) technology and device to device (D2D) communications to leverage the capacity and the spectrum efficiency in 5th generation (5G) systems. In this context, we carry out a resource allocation scheme designed to enable D2D communications underlay cellular network in the E-band. The proposed scheme aims to enhance the system throughput and alleviate the interference caused by dense networks of D2D pairs that share and reuse the same resource blocks of cellular users. We provide a formulation of the optimization problem and indicate its NP-hardness. A great deal of merit is given to our resource re-use solution as it managed to increase the overall system throughput and it achieved significant results in mitigating the interference. Moreover, we shed light on how the system evolves when the transmit powers of both user terminals and device terminals increases.
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