New Criteria and Related Techniques for 4G Wireless Systems

Wei Chen
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引用次数: 2

Abstract

Summary form only given: 3G technologies have been widely deployed in Europe, Japan and other countries since 2000. But few 3G telecom operators could claim profitable from the current services provided by 3G networks. The real issues hit the 3G flying are spectrum efficiency, uplink bandwidth and overall cost with CDMA based technology. This presentation, based on SCDMA, TD-SCDMA, and McWill deploying experiences in the last ten years in China, proposes new criteria for 4G wireless communication systems. Under the proposed criteria, what are missing in current wireless communication theory is addressed. In order to increase the spectrum efficiency and uplink bandwidth in a 4G system, the presentation gives a way to optimally consider frequency, time, spatial, and coding domains issues altogether. Most importantly, the presentation points out new foundation based on multi-user information theory for wireless communications, which might be one of many means that can effectively increase spectrum utilization. Uplink bandwidth is a bottleneck for many wireless communication systems. Traditionally, in order to get higher bandwidth efficiency, a higher order or multi-level modulation (such as QAM 64) should be normally adopted, which requires high output power in subscriber terminal side. This talk shows an alternative way to handle high bit/symbol rate modulation without high multi-level output power.
4G无线系统新标准及相关技术
仅给出摘要形式:3G技术从2000年开始在欧洲、日本等国家广泛部署。但几乎没有3G电信运营商能够宣称从目前3G网络提供的服务中获利。3G发展面临的真正问题是频谱效率、上行带宽和基于CDMA技术的总体成本。本报告基于SCDMA、TD-SCDMA和McWill过去十年在中国的部署经验,提出了4G无线通信系统的新标准。在提出的标准下,解决了当前无线通信理论中所缺失的问题。为了提高4G系统的频谱效率和上行带宽,该演示给出了一种同时考虑频率、时间、空间和编码域问题的最佳方法。最重要的是,本文指出了基于多用户信息理论的无线通信新基础,这可能是有效提高频谱利用率的众多手段之一。上行带宽是许多无线通信系统的瓶颈。传统上,为了获得更高的带宽效率,通常应采用高阶或多级调制(如qam64),这对用户端输出功率要求很高。本演讲展示了一种处理高比特/符号率调制而不需要高多级输出功率的替代方法。
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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