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首页> 外文期刊>IEEE transactions on wireless communications >A Spectrum-Efficient Multicarrier CDMA Array-Receiver with Diversity-Based Enhanced Time and Frequency Synchronization
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A Spectrum-Efficient Multicarrier CDMA Array-Receiver with Diversity-Based Enhanced Time and Frequency Synchronization

机译:具有基于分集的增强型时间和频率同步的频谱高效多载波CDMA阵列接收器

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摘要

This paper proposes a spectrum-efficient spatio-temporal array-receiver for multi-carrier CDMA systems named MC-STAR. First, we derive a new post-correlation model for MC-CDMA that characterizes the structure of the channel in space, time and frequency. Based on this model, we introduce a new multi-carrier array-receiver with rapid and accurate joint synchronization in time and frequency. There, we exploit jointly the spatial, temporal and frequency diversities as well as the intrinsic inter-carrier correlation (termed hereafter frequency gain) to improve the channel identification and the synchronization operations. In addition, based on a new link/system-level performance analysis, with a band-limited chip waveform assumption, we provide a comparative performance study of MC-STAR over two multi-carrier CDMA air-interface configurations, namely MT-CDMA and MC-DS-CDMA, in the most realistic operating conditions. Link/system-level results confirm the advantages of MT-CDMA in increasing throughput and bandwidth efficiency. The current trend is to design radio air-interfaces with flat fading subcarriers. In contrast, with MC-STAR we show that the positive effects of multipath diversity and frequency gain over large strongly-overlapping subcarriers is more significant than the negative effects of multipath and multi-carrier interference.
机译:本文提出了一种用于多载波CDMA系统的频谱有效的时空阵列接收器,称为MC-STAR。首先,我们推导了一种新的MC-CDMA后相关模型,该模型在空间,时间和频率上表征了信道的结构。在此模型的基础上,我们引入了一种新型的多载波阵列接收器,该接收器在时间和频率上具有快速而准确的联合同步。在那里,我们共同利用空间,时间和频率多样性以及固有的载波间相关性(以下称为频率增益)来改善信道识别和同步操作。此外,基于新的链路/系统级性能分析,并假设带限芯片波形,我们提供了在两种多载波CDMA无线接口配置(即MT-CDMA和MC-DS-CDMA,在最现实的操作条件下。链路/系统级结果证实了MT-CDMA在提高吞吐量和带宽效率方面的优势。当前的趋势是设计具有平坦衰落子载波的无线电空中接口。相比之下,通过MC-STAR,我们表明,在较大的强重叠子载波上,多径分集和频率增益的正面影响比多径和多载波干扰的负面影响更为显着。

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