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首页> 外文期刊>IEEE Transactions on Signal Processing >A Differential Space–Time Modulation Scheme for Correlated Rayleigh Fading Channels: Performance Analysis and Design
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A Differential Space–Time Modulation Scheme for Correlated Rayleigh Fading Channels: Performance Analysis and Design

机译:相关瑞利衰落信道的差分时空调制方案:性能分析和设计

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Differential space-time modulation (DSTM) is an encoding technique for multiantenna systems that allows the receiver to detect the transmitted signals without the knowledge of the fading channels. It can be viewed as an extension of the differential phase-shift keying scheme in single antenna systems. In this paper, we investigate the performance of multiantenna systems employing DSTM under spatially correlated Rayleigh fading channels. We present three expressions for calculating the pairwise error probability (PEP) of the DSTM scheme. The first expression allows us to numerically calculate the exact PEP. The remaining two are closed-form expressions of the exact PEP at asymptotically high signal-to-noise ratios and the PEP upper bound. It is found that when the distance matrix is proportional to the identity matrix, the error probability is determined by the channel correlation matrix and the initial transmitted code matrix. Based on the new PEP upper bound, we derive a criterion for optimizing the initial code matrix for this special case. Simulation results show that the performance of the differential space-time coded systems can be significantly improved by designing the initial transmitted code matrix according to the proposed design criterion
机译:差分时空调制(DSTM)是一种用于多天线系统的编码技术,该技术允许接收机在不知道衰落信道的情况下检测发送的信号。可以将其视为单天线系统中差分相移键控方案的扩展。在本文中,我们研究了在空间相关的瑞利衰落信道下采用DSTM的多天线系统的性能。我们提出了三个表达式,用于计算DSTM方案的成对错误概率(PEP)。第一个表达式使我们可以通过数值计算精确的PEP。其余两个是渐近形式的精确PEP的渐进形式,表示在渐近高的信噪比和PEP上限的情况下。发现当距离矩阵与单位矩阵成比例时,错误概率由信道相关矩阵和初始发送码矩阵确定。基于新的PEP上限,我们导出了针对这种特殊情况优化初始代码矩阵的准则。仿真结果表明,根据提出的设计准则设计初始传输码矩阵,可以显着提高差分时空编码系统的性能。

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