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首页> 外文期刊>IEEE transactions on wireless communications >Design of cyclic delay diversity for single carrier cyclic prefix (SCCP) transmissions with block-iterative GDFE (BI-GDFE) receiver
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Design of cyclic delay diversity for single carrier cyclic prefix (SCCP) transmissions with block-iterative GDFE (BI-GDFE) receiver

机译:具有块迭代GDFE(BI-GDFE)接收器的单载波循环前缀(SCCP)传输的循环延迟分集设计

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Single carrier cyclic prefix (SCCP) modulation has been adopted as one of the physical layer air-interfaces for IEEE802.I6 standards due to its less stringent requirement on peak-to-average power ratio (PAPR) than multicarrier modulation. As a single carrier transmission, however, the received SCCP blocks suffer from inter-symbol interference (ISI). The block iterative generalized decision feedback equalizer (BI-GDFE) is an effective interference cancellation scheme which generally shows performance improvement over linear equalizers. However, in order to achieve a significant gain, the channel must contain rich multipath components, and this may not necessarily be true in many systems. In this paper, we propose to apply cyclic delay diversity (CDD) to a SCCP system so that the possible performance improvement by using a BI-GDFE detector can be enhanced. The asymptotic performance of the proposed system is analyzed using random matrix results. We propose a scheme to determine the optimal delay parameter for CDD. Computer simulations have shown that by incorporating CDD into the transmitter and using a BI-GDFE receiver, the BER performance of the system can approach the MFB within several iterations for high SNR region.
机译:单载波循环前缀(SCCP)调制已被用作IEEE802.I6标准的物理层空中接口之一,因为其对峰均功率比(PAPR)的要求不如多载波调制严格。然而,作为单载波传输,接收到的SCCP块遭受符号间干扰(ISI)。块迭代广义判决反馈均衡器(BI-GDFE)是一种有效的干扰消除方案,通常可显示出比线性均衡器更高的性能。但是,为了获得显着的增益,通道必须包含丰富的多径分量,这在许多系统中不一定是正确的。在本文中,我们建议将循环延迟分集(CDD)应用于SCCP系统,以便通过使用BI-GDFE检测器来增强可能的性能。利用随机矩阵结果分析了所提出系统的渐近性能。我们提出了一种确定CDD最佳延迟参数的方案。计算机仿真表明,通过将CDD合并到发送器中并使用BI-GDFE接收器,对于高SNR区域,系统的BER性能可以在几次迭代中接近MFB。

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