首页> 外文会议>Communication Systems and Networks and Workshops,COMSNETS,2009 First International Conference on >Cutting edge at the cell edge: Co-channel interference mitigation in emerging broadband wireless systems
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Cutting edge at the cell edge: Co-channel interference mitigation in emerging broadband wireless systems

机译:小区边缘的最前沿:新兴宽带无线系统中的同信道干扰缓解

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Emerging Broadband Wireless systems, such as those based on IEEE 802.16m or 3GPP LTE-A, will re-use spectrum in every sector (1 : 1 reuse) and maximize system spectrum efficiency. In so doing, the spectrum efficiency for cell-edge users is very poor in comparison with the system-wide average, and nomadic users located near the cell edge experience very low throughput. This is an important concern for India, where nomadic users constitute 85% of mobile phone users, urban cells are relatively small, and the fraction of cell-edge users is as high as 40%. The basic approach to improving cell-edge performance is the so-called fractional frequency reuse (FFR), where spectrum reuse is less than 1 : 1 for cell-edge users. However, techniques that mitigate/cancel interference can improve the spectrum efficiency of FFR. This paper reviews an integrated package of three techniques, proposed by CEWiT for inclusion in the international standards, which mitigate the impact of cell-edge co-channel interference in the downlink: two-dimensional phase offset diversity, inter-cell interference cancellation, and conjugate data repetition. The first two techniques employ multiple transmit antennas. The first and third are open-loop techniques, which will work for nomadic as well as high-speed users, while the second is closed-loop and involves base-station co-operation, and is suitable for nomadic users. All three techniques share the important feature that the transmit signal from each basestation appears to be emanating from a single transmit antenna, enabling the use of low-complexity multi-antenna interference suppression algorithms at the receiver. The paper will discuss the performance of each technique, and also show that they can be employed together in a complementary manner to improve cell-edge performance.
机译:新兴宽带无线系统,例如基于IEEE 802.16M或3GPP LTE-A的那些,将在每个扇区(1:1重用)中重新使用频谱并最大限度地提高系统频谱效率。在这样做中,与系统宽的平均值相比,细胞边缘用户的频谱效率非常差,并且位于小区边缘附近的游牧用户体验非常低的吞吐量。这对印度来说是一个重要的问题,其中游牧用户构成了85%的手机用户,城市细胞相对较小,细胞边缘用户的一部分高达40%。提高细胞边缘性能的基本方法是所谓的小数频率重用(FFR),其中频谱再利用小于1:1,用于细胞边缘用户。但是,减缓/取消干扰的技术可以提高FFR的频谱效率。本文审查了COEWIT提出的三种技术的一体化包装,以便包含在国际标准中,这减轻了细胞 - 边缘同信道干扰在下行链路中的影响:二维相位偏移分集,小区间干扰消除,以及共轭数据重复。前两种技术采用多个发射天线。第一个和第三是开环技术,它将用于游牧民族以及高速用户,而第二个是闭环,涉及基站合作,适用于游牧用户。所有三种技术共享来自每个基站的发射信号的重要特征看起来从单个发射天线发出,从而能够在接收器处使用低复杂性多天线干扰抑制算法。本文将讨论每种技术的性能,并且还表明它们可以以互补的方式使用以改善细胞边缘性能。

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