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Multipath interference canceller for high-speed packet transmission with adaptive modulation and coding scheme in W-CDMA forward link

机译:W-CDMA前向链路中具有自适应调制和编码方案的高速分组传输多径干扰消除器

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This paper proposes a multipath interference canceller (MPIC) associated with orthogonal code-multiplexing with orthogonal variable spreading factor (OVSF) channelization codes that achieves high throughput performance with adaptive data modulation in multipath fading channels in the W-CDMA forward link, and evaluates its throughput performance by computer simulation. The simulation results elucidate that sufficient multipath interference suppression is achieved by a four-stage MPIC with 6-12 orthogonal code-multiplexing using one iterative channel estimation with pilot and decision feedback data symbols hard-decided after RAKE combining. We show that the maximum peak throughput using MPIC is approximately 2.1 fold that without MPIC in a 2-path Rayleigh fading channel and that the peak throughput of 8.0 Mbps is achieved using 64QAM data modulation within a 5-MHz bandwidth. Furthermore, the required average E/sub b//N/sub 0/ for satisfying the same throughput with MPIC is decreased by more than 2.0 dB.
机译:本文提出了与正交码复用相关的多径干扰消除器(MPIC),与正交可变扩展因子(OVSF)信道化码相关联,该码在W-CDMA前向链路中的多径衰落通道中的自适应数据调制实现了高吞吐量性能,并评估其计算机仿真吞吐量性能。通过使用一个迭代信道估计,使用一个迭代信道估计,使用一个迭代信道估计来实现足够的多径干扰抑制的仿真结果阐明了足够的多径干扰抑制。我们表明,使用MPIC的最大峰值吞吐量大约是2.1折,而在2路径瑞利衰落通道中没有MPIC,并且在5-MHz带宽范围内使用64QAM数据调制实现8.0 Mbps的峰值吞吐量。此外,使用MPIC的所需平均E / SUB B / SU / SU / SUE 0 /用于满足MPIC的相同吞吐量将减少2.0 dB。

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