功率分配对设备间发现过程的影响

Essam Abdelsalam Osman, Muhidul Islam Khan, Osama Elgarhy, L. Reggiani, M. Alam
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引用次数: 0

摘要

设备到设备(D2D)通信是LTE和5G高级版本的关键技术之一。在传统的移动网络中,集中式基站(或eNodeB)控制着一切,但随着移动用户和设备数量的增加,出现业务中断、频谱效率低、时延高等问题,这种解决方案已不能满足用户的需求。D2D通信是一项重要的技术,可以帮助解决与流量开销相关的一些问题,并满足5G的要求。在本文中,我们关注5G分散应急场景下的D2D通信,其中分散意味着没有来自eNodeB的通信或控制。D2D通信的主要问题之一是能够直接互连的设备对之间的发现过程的效率,特别是在分散的情况下。在此背景下,我们探索并比较了不同功率分配策略随着D2D器件数量和不同系统参数的增加而产生的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Power Allocation on Device-to-Device Discovery Processes
Device to device (D2D) communications is one of the key-technologies for advanced releases of LTE and 5G. The centralized base station (or eNodeB), which controls everything in traditional mobile networks, cannot be the only solution when the number of mobile users and devices increase, causing service outages, low spectral efficiency, and high latency. An important technology that can help to solve some of the issues related to traffic overhead and to fulfill the requirements of 5G is D2D communication. In this paper, we focus on D2D communication in a 5G decentralized emergency scenario, where decentralized means that there is no communication or control from the eNodeB. One of the main issues in D2D communications, is the efficiency of the discovery process between couples of devices able to interconnect directly, especially in the decentralized case. In this context, we explore and compare the impact of different power allocation strategies with increasing numbers of D2D devices and different system parameters.
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