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Broadband packet wireless access based on VSF-OFCDM and MC/DS-CDMA

机译:基于VSF-OFCDM和MC / DS-CDMA的宽带分组无线访问

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This paper proposes broadband packet wireless access employing Variable Spreading Factor-Orthogonal Frequency and Code Division Multiplexing (VSF-OFCDM) with two-dimensional spreading that prioritizes time domain spreading in the forward link and multi-carrier/DS-CDMA (MC/DS-CDMA) in the reverse link for the system beyond IMT-2000. Based on the wireless access scheme, we propose major radio air interfaces in the physical layer to achieve our target maximum throughput beyond 100 Mbps and 20 Mbps in the forward and reverse links, respectively. Furthermore, we present key technologies such as the adaptive radio link parameter control coupled with link adaptation, pilot channel assisted coherent detection in both links, adaptive antenna array beam forming transmitter and receiver, cell search, and channel coding. Finally, simulation results elucidate that VSF-OFCDM using die proposed radio link parameters achieves a throughput above 100 Mbps at the average received signal energy per symbol-to-background noise power spectrum density ratio (Ea/No) of approximately 13 dB (101.5 MHz bandwidth, without antenna diversity reception, 12-path Rayleigh fading channel). Furthermore, MC/DS-CDMA realizes a throughput above 20 Mbps at the average received Ea/No of approximately 8 dB (40 MHz bandwidth, with antenna diversity reception, 6-path Rayleigh fading channel).
机译:本文提出了一种采用可变扩频因子-正交频分复用(VSF-OFCDM)和二维扩展的宽带分组无线接入技术,该技术优先考虑前向链路中的时域扩展和多载波/ DS-CDMA(MC / DS- CDMA)在IMT-2000以后的系统的反向链路中。基于无线访问方案,我们建议在物理层中使用主要的无线空中接口,以分别在正向和反向链路中实现超过100 Mbps和20 Mbps的目标最大吞吐量。此外,我们介绍了关键技术,例如与链路自适应耦合的自适应无线电链路参数控制,两个链路中的导频信道辅助相干检测,自适应天线阵列波束形成发射机和接收机,小区搜索以及信道编码。最后,仿真结果表明,使用建议的无线电链路参数的VSF-OFCDM在每个符号与背景噪声功率谱密度比(Ea / No)的平均接收信号能量约为13 dB(101.5 MHz)时实现了100 Mbps以上的吞吐量带宽,无天线分集接收,12路径瑞利衰落信道)。此外,MC / DS-CDMA在大约8 dB的平均接收Ea / No(40 MHz带宽,具有天线分集接收,6路径瑞利衰落信道)下实现了20 Mbps以上的吞吐量。

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