Cooperative Wireless Cellular Systems: An Information-Theoretic View

IF 2 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Foundations and Trends in Communications and Information Theory Pub Date : 2012-04-14 DOI:10.1561/0100000048
O. Simeone, Nathan Levy, A. Sanderovich, O. Somekh, B. M. Zaidel, H. Poor, S. Shamai
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引用次数: 75

Abstract

In this monograph, the impact of cooperation on the performance of wireless cellular systems is studied from an information-theoretic standpoint, focusing on simple formulations typically referred to as Wynertype models. Following ongoing research and standardization efforts, the text covers two main classes of cooperation strategies. The first class is cooperation at the base station (BS) level, which is also known as Multi-Cell Processing (MCP), network Multiple-Input MultipleOutput (MIMO), or Coordinated Multi-Point transmission/reception (CoMP). With MCP, cooperative decoding, for the uplink, or encoding, for the downlink, is enabled at the BSs. MCP is made possible by the presence of an architecture of, typically wired, backhaul links connecting individual BSs to a central processor (CP) or to one another. The second class of cooperative strategies allows cooperation in the form of relaying for conveying data between Mobile Stations (MSs) and BSs in either the uplink or the downlink. Relaying can be enabled by two possible architectures. A first option is to deploy dedicated Relay Stations (RSs) that are tasked with forwarding uplink or downlink traffic. The second option is for the MSs to act as RSs for other MSs. MCP is first studied under ideal conditions on the backhaul links, namely by assuming that all BSs are connected to a CP with unlimitedcapacity links. Both Gaussian (nonfading) and flat-fading channels are analyzed, for the uplink and the downlink, and analytical insights are drawn into the performance advantages of MCP in different relevant operating regimes. Performance comparison is performed with standard Single-Cell Processing (SCP) techniques, whereby each BS decodes, in the uplink, or encodes, in the downlink, independently, as implemented with different spatial reuse factors. Then, practical constraints on the backhaul architecture enabling MCP are introduced. Specifically, three common settings are studied. In the first, all the BSs are connected to a CP via finite-capacity links. In the second, only BSs in adjacent cells are connected via (finite-capacity) backhaul links. In the third, only a subset of BSs is connected to a CP for joint encoding/decoding (clustered cooperation). Achievable rates for the three settings are studied and compared for both the uplink and the downlink. The performance advantages of relaying are analyzed for cellular systems with dedicated RSs and with cooperative MSs. Different techniques are reviewed that require varying degrees of information about system parameters at the MSs, RSs, and BSs. Performance is investigated with both MCP and SCP, revealing a profound interplay between cooperation at the BS level and relaying. Finally, various open problems are pointed out.
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协同无线蜂窝系统:信息论观点
在这本专著中,从信息论的角度研究了合作对无线蜂窝系统性能的影响,重点是通常被称为Wynertype模型的简单公式。根据正在进行的研究和标准化工作,该文本涵盖了两类主要的合作战略。第一类是基站(BS)级的合作,也称为多单元处理(MCP)、网络多输入多输出(MIMO)或协调多点传输/接收(CoMP)。通过MCP,在BSs上对上行链路进行协同解码,对下行链路进行协同编码。MCP之所以成为可能,是因为存在一种架构,通常是有线的,将单个BSs连接到中央处理器(CP)或彼此连接的回程链路。第二类合作策略允许在上行链路或下行链路上以中继形式在移动站(MSs)和基站之间传输数据。中继可以通过两种可能的体系结构启用。第一种选择是部署专门的中继站(RSs),负责转发上行链路或下行链路流量。第二种选择是由管理人员担任其他管理人员的RSs。首先在回程链路的理想条件下,即假设所有的BSs都连接到一个具有无限容量链路的CP上,研究了MCP。对上行链路和下行链路的高斯(非衰落)和平等衰落信道进行了分析,并分析了MCP在不同相关运行体制下的性能优势。性能比较使用标准的单细胞处理(SCP)技术进行,其中每个BS在上行链路中独立解码,或在下行链路中独立编码,实现不同的空间重用因素。然后,介绍了支持MCP的回程架构的实际约束。具体来说,研究了三种常见的设置。在第一种方法中,所有的BSs通过有限容量链路连接到一个CP。在第二种情况下,只有相邻小区中的基站通过(有限容量)回程链路连接。在第三种情况下,只有一小部分BSs连接到CP进行联合编码/解码(集群合作)。研究和比较了上行链路和下行链路三种设置的可实现速率。分析了中继在蜂窝系统中具有专用RSs和合作MSs的性能优势。本文回顾了不同的技术,这些技术需要不同程度的关于ms、RSs和BSs的系统参数的信息。通过MCP和SCP对绩效进行了调查,揭示了BS层面的合作与中继之间的深刻相互作用。最后,指出了一些有待解决的问题。
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来源期刊
Foundations and Trends in Communications and Information Theory
Foundations and Trends in Communications and Information Theory COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS-
CiteScore
7.90
自引率
0.00%
发文量
6
期刊介绍: Foundations and Trends® in Communications and Information Theory publishes survey and tutorial articles in the following topics: - Coded modulation - Coding theory and practice - Communication complexity - Communication system design - Cryptology and data security - Data compression - Data networks - Demodulation and Equalization - Denoising - Detection and estimation - Information theory and statistics - Information theory and computer science - Joint source/channel coding - Modulation and signal design - Multiuser detection - Multiuser information theory
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