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A novel variable group hybrid interference cancellation for CDMA systems.

机译:用于CDMA系统的新颖的可变组混合干扰消除。

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摘要

The CDMA system is multiple access interference (MAI) limited. The conventional matched filter (MF) receiver is non optimal as the MAI is treated as useless noise. This leads to the proposal of the optimal multiuser receiver which has very good performance but is too complex to be practical. Sub-optimal detectors such as interference cancellation (IC) receivers seem promising due to their structural simplicity and good performance. The variable group hybrid interference cancellation (VGHIC) receiver proposed in this thesis combines the advantages of the parallel IC (PIC) and successive IC (SIC) in a novel way. In the VGHIC, users are grouped such that those with similar powers are selected into the same group. The PIC is used within the members of each group while the SIC is applied between groups of different powers. Theoretical analysis as well as simulations show that the VGHIC has an overall performance advantage over other IC receivers. Improvements have also been proposed to further enhance the performance of the VGHIC. They include the ranking of users, use of the averaged correlation samples, partial combining of correlation samples and partial cancellation. These techniques are found to be effective. Due to the adaptive nature of the VGHIC structure, it exhibits different processing delay profiles depending on the power spread of received signals. A simple method of limiting the processing delay has been proposed. It can reduce the processing delay by 40% at the expense of 4.5% reduction in user capacity. When phase and timing estimation errors are introduced, the VGHIC has better performance than other IC schemes even with high estimation errors. The VGHIC with RAKE receiver is investigated using realistic channel conditions and the results verify that it outperforms the conventional RAKE receiver. The major advantage of the VGHIC over other IC schemes is the ability to adapt its structure according to changing power profile of the received signals. Hence, the VGHIC is able to perform consistently in different environments. Moreover, its structure can be easily changed by modifying the design parameter. All these features make the VGHIC a viable option for increasing the capacity of CDMA systems.
机译:CDMA系统受多址干扰(MAI)限制。传统的匹配滤波器(MF)接收器不是最佳选择,因为MAI被视为无用噪声。这导致了最佳多用户接收器的建议,该接收器具有很好的性能,但是太复杂而不能实用。诸如干扰消除(IC)接收器之类的次优检测器由于其结构简单和性能良好而显得很有前途。本文提出的可变组混合干扰消除(VGHIC)接收机以新颖的方式结合了并行IC(PIC)和连续IC(SIC)的优点。在VGHIC中,将用户分组,以便将具有类似权限的用户选择到同一组中。 PIC用于每个组的成员中,而SIC用于不同权力的组之间。理论分析和仿真表明,VGHIC具有优于其他IC接收器的总体性能优势。还提出了改进措施以进一步增强VGHIC的性能。它们包括用户的排名,平均相关样本的使用,相关样本的部分组合和部分取消。发现这些技术是有效的。由于VGHIC结构的自适应特性,它会根据接收信号的功率散布展现出不同的处理延迟曲线。已经提出了一种限制处理延迟的简单方法。它可以减少40%的处理延迟,但以减少4.5%的用户容量为代价。当引入相位和时序估计误差时,即使具有很高的估计误差,VGHIC的性能也比其他IC方案更好。使用实际的信道条件对带有RAKE接收器的VGHIC进行了研究,结果证明其性能优于传统的RAKE接收器。 VGHIC相对于其他IC方案的主要优点是能够根据接收信号的功率变化来调整其结构。因此,VGHIC能够在不同的环境中保持一致的性能。此外,可以通过修改设计参数轻松更改其结构。所有这些功能使VGHIC成为增加CDMA系统容量的可行选择。

著录项

  • 作者

    Ang, Kay Wee.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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