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Joint-detection and interference cancellation based burst-by-burst adaptive CDMA schemes

机译:基于联合检测和干扰消除的逐脉冲自适应CDMA方案

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Spread adaptive quadrature amplitude modulated (AQAM) code-division multiple access (CDMA) is proposed as a powerful means of exploiting the time-variant channel capacity fluctuations of wireless channels. It is studied in comparison to variable spreading factor (VSF)-based techniques. These adaptive-rate transmission methods are compared in the context of joint detection and interference cancellation assisted adaptive CDMA (ACDMA) systems. More explicitly, we exploit the time-variant channel quality of mobile channels by switching either the modulation mode (AQAM) or the spreading factor (VSF) on a burst-by-burst basis. The most appropriate modulation mode or spreading factor is chosen based on the instantaneous channel quality estimated. The chosen modem mode or spreading factor is communicated to the remote communicator either through explicit signalling or extracted at the receiver using blind detection techniques. The multiuser joint detector (JD) and the successive interference cancellation (SIC) receiver are compared in the context of these adaptive schemes, with the conclusion that the JD outperformed the SIC receiver in the ACDMA schemes at the cost of increased complexity. Finally, the performance of the uncoded AQAM JD-CDMA scheme is also compared to that of adaptive trellis coded modulation (TCM) assisted AQAM JD-CDMA, which allows us to incorporate adaptive channel coding without any bandwidth expansion. We also show that in the particular scenario studied, adaptive TCM outperformed adaptive turbo TCM since the system was designed for maintaining a low turbo-interleaver delay.
机译:扩频自适应正交幅度调制(AQAM)码分多址(CDMA)被提议为一种利用无线信道时变信道容量波动的有力手段。与基于可变扩展因子(VSF)的技术相比,该工具已得到研究。在联合检测和干扰消除辅助的自适应CDMA(ACDMA)系统中比较了这些自适应速率传输方法。更明确地说,我们通过逐个脉冲地切换调制模式(AQAM)或扩频因子(VSF),来利用移动信道的时变信道质量。基于估计的瞬时信道质量,选择最合适的调制模式或扩展因子。所选择的调制解调器模式或扩频因数通过显式信令传送到远程通信器,或者使用盲检测技术在接收器处提取出来。在这些自适应方案的背景下,对多用户联合检波器(JD)和连续干扰消除(SIC)接收机进行了比较,得出的结论是,在DCDMA方案中,JD优于SIC接收机,但代价是增加了复杂性。最后,还将未编码的AQAM JD-CDMA方案的性能与自适应网格编码调制(TCM)辅助的AQAM JD-CDMA方案的性能进行了比较,这使我们能够合并自适应信道编码而无需任何带宽扩展。我们还表明,在所研究的特定情况下,自适应TCM的性能优于自适应Turbo TCM,因为该系统是为保持低Turbo交织器延迟而设计的。

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