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Intelligent genetic algorithms for next-generation broadband multi-carrier CDMA wireless networks

机译:用于下一代多载波宽带CDma无线网络的智能遗传算法

摘要

This dissertation proposes a novel intelligent system architecture for next-generation broadband multi-carrier CDMA wireless networks. In our system, two novel and similar intelligent genetic algorithms, namely Minimum Distance guided GAs (MDGAs) are invented for both peak-to-average power ratio (PAPR) reduction at the transmitter side and multi-user detection (MUD) at the receiver side. Meanwhile, we derive a theoretical BER performance analysis for the proposed MC-CDMA system in A WGN channel. Our analytical results show that the theoretical BER performance of synchronized MC-CDMA system is the same as that of the synchronized DS-CDMA system which is also used as a theoretical guidance of our novel MUD receiver design. In contrast to traditional GAs, our MDGAs start with a balanced ratio of exploration and exploitation which is maintained throughout the process. In our algorithms, a new replacement strategy is designed which increases significantly the convergence rate and reduces dramatically computational complexity as compared to the conventional GAs. The simulation results demonstrate that, if compared to those schemes using exhaustive search and traditional GAs, (1) our MDGA-based P APR reduction scheme achieves 99.52% and 50+% reductions in computational complexity, respectively; (2) our MDGA-based MUD scheme achieves 99.54% and 50+% reductions in computational complexity, respectively. The use of one core MDGA solution for both issues can ease the hardware design and dramatically reduce the implementation cost in practice.
机译:本文提出了一种用于下一代宽带多载波CDMA无线网络的新型智能系统架构。在我们的系统中,发明了两种新颖且类似的智能遗传算法,即最小距离引导遗传算法(MDGA),用于降低发射器端的峰均功率比(PAPR)和接收器的多用户检测(MUD)侧。同时,我们推导了在A WGN信道中提出的MC-CDMA系统的理论BER性能分析。我们的分析结果表明,同步MC-CDMA系统的理论BER性能与同步DS-CDMA系统的理论BER性能相同,这也被用作我们新型MUD接收机设计的理论指导。与传统的GA相比,我们的MDGA从平衡的勘探和开发比率开始,并在整个过程中保持这种比率。在我们的算法中,设计了一种新的替换策略,与传统的GA相比,该策略显着提高了收敛速度并显着降低了计算复杂性。仿真结果表明,与使用穷举搜索和传统GA的方案相比,(1)我们基于MDGA的P APR降低方案分别使计算复杂度降低了99.52%和50 +%。 (2)我们基于MDGA的MUD方案分别使计算复杂度降低了99.54%和50 +%。针对这两个问题使用一种核心MDGA解决方案可以简化硬件设计并在实践中大大降低实施成本。

著录项

  • 作者

    Ni Q; Song Y; Zhang Yang;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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