On interference cancellation and iterative techniques

R. Kohno, R. Morelos-Zaragoza
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引用次数: 2

Abstract

Recent research activities in the area of mobile radio communications have moved to third generation (3G) cellular systems to achieve higher quality with variable transmission rate of multimedia information. In this paper, an overview is presented of various interference cancellation and iterative detection techniques that are believed to be suitable for 3G wireless communications systems. Key concepts are space-time processing and space-division multiple access (or SDMA) techniques. SDMA techniques are possible with software antennas. Furthermore, to reduce receiver implementation complexity, iterative detection techniques are considered. A particularly attractive method uses tentative hard decisions, made on the received positions with the highest reliability, according to some criterion, and can potentially yield an important reduction in the computational requirements of an iterative receiver, with minimum penalty in error performance. A study of the tradeoffs between complexity and performance loss of iterative multiuser detection techniques is a good research topic.
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干扰消除与迭代技术
最近在移动无线电通信领域的研究活动已经转移到第三代(3G)蜂窝系统,以实现更高的质量和可变的多媒体信息传输速率。在本文中,概述了各种干扰消除和迭代检测技术,被认为是适用于3G无线通信系统。关键概念是时空处理和空分多址(SDMA)技术。SDMA技术可以通过软件天线实现。此外,为了降低接收机实现的复杂性,还考虑了迭代检测技术。一种特别有吸引力的方法是根据某些标准,在具有最高可靠性的接收位置上做出暂定的硬决策,并且可能在迭代接收器的计算需求中产生重要的减少,并且在错误性能上的损失最小。研究迭代多用户检测技术的复杂性和性能损失之间的权衡是一个很好的研究课题。
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