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Optimal Power Distribution Control for Multicode MC-CDMA with Zero-Forcing Successive Interference Cancellation

机译:具有零强迫连续干扰消除的多码MC-CDMA的最优功率分配控制

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Multicarrier CDMA (MC-CDMA) has become a promising candidate for future wireless multimedia communications for its robustness to frequency-selective fading and its flexibility for handling multiple data rates. Among different multirate access schemes, multicode MC-CDMA is attractive for its high performance, good flexibility in rate matching, and low complexity. However, its performance is limited by self-interference (SI) and multiuser interference (MUI). In this paper a zero-forcing successive interference cancellation (ZF-SIC) receiver is used to mitigate this problem for multicode MC-CDMA. Furthermore, optimal power distribution control (PDC), which minimizes each user's bit error rate (BER), is considered. Our results show that, in correlated Rayleigh fading channels, the ZF-SIC receiver integrated with the optimal PDC dramatically improves the performance of the multicode MC-CDMA system in comparison to other receivers proposed in the literature. Moreover, the optimal PDC significantly outperforms the PDC based on equal BER criterion, particularly under a short-term transmit power constraint.
机译:多载波CDMA(MC-CDMA)凭借其对频率选择衰落的鲁棒性和处理多种数据速率的灵活性,已成为未来无线多媒体通信的有希望的候选者。在不同的多速率接入方案中,多码MC-CDMA以其高性能,速率匹配的灵活性和低复杂性而吸引人。但是,其性能受到自干扰(SI)和多用户干扰(MUI)的限制。在本文中,采用零强制连续干扰消除(ZF-SIC)接收机来缓解多码MC-CDMA的这一问题。此外,考虑了使每个用户的误码率(BER)最小化的最佳功率分配控制(PDC)。我们的结果表明,在相关瑞利衰落信道中,与最佳PDC集成在一起的ZF-SIC接收机与文献中提出的其他接收机相比,极大地提高了多码MC-CDMA系统的性能。此外,基于相等的BER标准,最佳PDC明显优于PDC,尤其是在短期发射功率约束下。

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