Proximity Mode Selection Method in Device to Device Communications

Marzieh Sheybani, M. Mehrjoo, M. Kazeminia
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引用次数: 4

Abstract

Growing smart phones population and multimedia traffic in cellular networks have caused traffic congestion in base stations (BS) and increasing delay in responding users requests. Device-to-Device communication, shortly D2D, is a new feature of the emerging cellular network generation which can alleviate the traffic congestion in BS. One of the challenges of D2D is mode selection, i.e., deciding upon establishing a conventional cellular communication via BS or a direct D2D. In this paper, a mode selection method is proposed based on the use of the probability of users' proximity. Those users are nominated for D2D whose distance to their destination is higher than a range which creates proximity probability close to one. Moreover, the nominated one should not cause interference on other ongoing communications performing via BS or as D2D. The simulation of the proposed method in a cellular network shows that the required transmission power as well as the transmission latency decreases compared to the ones of a conventional cellular network where all calls are performed via the BS. In fact, the power and the delay reduction are caused by path loss deduction and frequency reusing gain, respectively, in D2D.
设备间通信中的接近模式选择方法
蜂窝网络中智能手机数量的增长和多媒体流量的增加导致了基站(BS)的通信拥塞和响应用户请求的延迟。设备对设备通信(Device-to-Device communication,简称D2D)是新兴蜂窝网络一代的一个新特性,它可以缓解移动通信系统中的交通拥堵。D2D的挑战之一是模式选择,即决定是通过BS建立传统的蜂窝通信还是直接D2D。本文提出了一种基于用户接近概率的模式选择方法。这些用户被提名为D2D,其到目的地的距离高于产生接近概率接近1的范围。此外,指定的通信不应对通过BS或D2D进行的其他正在进行的通信造成干扰。在蜂窝网络中的仿真表明,与传统蜂窝网络相比,该方法所需的传输功率和传输延迟都有所降低,而传统蜂窝网络中的所有呼叫都通过BS进行。实际上,在D2D中,功率降低和时延降低分别是由路径损耗扣除和频率复用增益引起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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