Cross-Tier Interference Control Through Mode Selection and Resource Allocation (MSRA) in a D2D Network Using Uplink Frequency Reuse

Naved Alam, S. Mehfuz
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引用次数: 1

Abstract

As the cellular mobile communication capacity is increasing every year people are demanding more robust, high speed and secure communication with low power consumption. To fulfill the requirement of the users, technology has been developing in an exponential manner and the data transmission rate and system capacity has been increased manifolds from past years. It is assumed that the population of cellular users will be increased by two fold till 2025. To improve throughput and capacity of cellular network a technology has been introduced in LTE-A which is Device to Device (D2D) communication. D2D is a 4.5G technology which was launched in 3GPP Release 12. The key challenges of D2D communication are controlling of transmission power, discovery of proximity devices, efficient allocation of available resource, and management of interference. Here in this paper we have provided an algorithm for the mode selection and resource allocation (MSRA) using an uplink channel reuse to control the cross-tier interference. The problems have been formulated in mathematical form, which is an NP-complete type problem. To solve such type of problem and reduce computational complexity we have proposed an algorithm. The results have been compared with [8] and a comparative study has been discussed.
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基于上行频率复用的D2D网络模式选择与资源分配(MSRA)跨层干扰控制
随着蜂窝式移动通信容量的逐年增加,人们对通信的鲁棒性、高速率和安全性以及低功耗的要求越来越高。为了满足用户的需求,技术以指数方式发展,数据传输速率和系统容量比过去几年有了成倍的提高。据推测,到2025年,手机用户数量将增加两倍。为了提高蜂窝网络的吞吐量和容量,LTE-A引入了一种技术,即设备到设备(D2D)通信。D2D是在3GPP第12版中推出的4.5G技术。D2D通信的主要挑战是传输功率的控制、邻近设备的发现、可用资源的有效分配和干扰的管理。本文提出了一种利用上行信道复用来控制跨层干扰的模式选择和资源分配(MSRA)算法。用数学形式表示了问题,这是一个np完全型问题。为了解决这类问题并降低计算复杂度,我们提出了一种算法。结果与[8]进行了比较,并进行了比较研究。
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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