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Hierarchical modulated quadrature amplitude modulation with signal space diversity and maximal ratio combining reception in Nakagami-m fading channels

机译:Nakagami-m衰落信道中具有信号空间分集和最大比率组合接收的分层调制正交幅度调制

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摘要

This study combines hierarchical modulation with signal space diversity (SSD) to present an unequal error protection scheme with improved bit-error rate (BER) performance for single as well as multiple antenna reception by employing maximal ratio combing in Nakagami-m fading channels. The optimal rotation angles for different constellation priority parameter ?? are derived. A theoretical BER expression in Nakagami-m fading channels using the nearest neighbour approximation approach is also derived. This is confirmed as a valid performance approximation for single and multiple antenna reception through simulations. The resultant scheme produces improved BER performance for both important and less important data without consuming any additional power than a non-SSD system at the cost of increased complexity at detection. Specifically, performance gains of up to 18 and 17 dB at a BER of 1 ?? 10-5 for base and refinement bits, respectively, are observed for single receive antenna with Nakagami m = 1. A further improvement of roughly 3 dB at a BER of 1 ?? 10-6 for base bits at N = 3 receiver antennas is found as hierarchy is increased. Although the gain is observed to decrease as m increases, a gain of 14 dB at 1 ?? 10-6 for ?? = 4 is achieved even as m increases from m = 1 to m = 3.
机译:这项研究通过在Nakagami-m衰落信道中采用最大比合并技术,将分层调制与信号空间分集(SSD)结合起来,提出了一种不平等的差错保护方案,可提高单天线和多天线接收的误码率(BER)性能。不同星座优先参数的最佳旋转角度派生。还推导了使用最近邻近似方法在中上米衰落信道中的理论BER表达式。通过仿真,这被确认为单天线和多天线接收的有效性能近似值。最终的方案可为重要数据和次要数据提供改进的BER性能,而不会比非SSD系统消耗任何额外的功率,但代价是检测的复杂性增加。具体地说,BER为1Ω时,性能增益高达18和17 dB。对于Nakagami m = 1的单个接收天线,分别观察到10 -5 的基本比特和精细比特。在BER为1时,进一步改善了约3 dB。随着层级的增加,发现N = 3个接收天线处的基本比特为10 -6 。尽管观察到增益随m的增加而减小,但在1Ω时增益为14 dB。 10 -6 ??即使m从m = 1增加到m = 3,也可以达到= 4。

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  • 来源
    《Communications, IET》 |2013年第12期|1-1|共1页
  • 作者

    Saeed; A.; Quazi; T.; Xu; H.;

  • 作者单位

    School of Engineering, University of KwaZulu-Natal, Durban 4041, Republic of South Africa|c|;

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