基于SINR约束的下一代无线网络容量分析

Wahida Mansouri, K. Mnif, F. Zarai, M. Obaidat, L. Kamoun
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引用次数: 1

摘要

在移动中,在任何地点和任何时间访问服务的需求导致了当前对异构无线网络集成的努力。特别是蜂窝网络和无线局域网(WLAN)作为提供容量和覆盖范围的互补系统,其互操作性引起了人们的广泛关注。下一代无线网络(NGWNs)预计将是异构网络,它集成了不同的无线接入技术(rat),如3GPP的长期演进(LTE)和wlan,如果接收器的信噪比(SINR)大于某个阈值,则支持传输。它基于这样一个事实,即具有不同需求和功能的几种相互竞争的技术可以共存。这种方法总是尝试根据一组需求选择最佳网络,并在这些需求没有得到满足时在它们之间执行系统间的切换。在本文中,我们分析了异构无线网络中的干扰,并在基于马尔可夫链的研究中,通过考虑每个呼叫的流量类别,并考虑网络内干扰和网络间干扰来确定容量。我们的分析方法是基于将系统建模为多维马尔可夫链,该链表示系统中不同类别服务的当前持续调用数量。这种分析使我们能够简化在不同无线网络中SINR干扰约束下的容量估计。基于此分析,我们得出了在每个RAT和不同网络规模下实时和非实时调用阻塞的性能评估结果
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacity Analysis in the Next Generation Wireless Networks Based on SINR Constraints
The demand for accessing services while on the move, at any place and anytime, has led to the current efforts towards integration ofheterogeneous wireless networks. In particular, interoperability of cellular networks and Wireless Local Area Network (WLAN), as complementarysystems in providing capacity and coverage, has drawn a lot of attention. Next Generation Wireless Networks (NGWNs) are expected to be heterogeneous networks which integrate different Radio Access Technologies (RATs) such as 3GPP’s Long Term Evolution (LTE) andWLANwhere a transmission is supported if the signal-to-interference-plus-noise ratio (SINR) at the receiver is greater than some threshold. It is based on the fact that several competing technologies, which have different requirements and capabilities, can co-exist. This approach tries to select always the best network according to a set of requirements and perform the inter-system handover between them, when those requirements are not fulfilled. In this article, we analyze the interference in heterogeneous wireless networks and determinethe capacity, in a study based on Markov chains, by taking into considerationthe class of traffic of each call and considering both intra-network interference and inter-network interference. Our analysis approach is based on modeling of the system as a multi-dimensional Markov chain which represents the current number of ongoing calls of different classes of services in the system. This analysis allows us to simplify the estimation of capacity under SINR interference constraints in different wireless networks. Based on this analysis, we derive performance evaluation results regarding blocking of real-time and non-real-time calls in each RAT and under different network sizes
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