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Performance Analysis of Two-Branch Transmit Diversity Block Coded OFDM Systems in Time-Varying Multipath Rayleigh Fading Channels

机译:两分行发射分集块编码OFDM系统的性能分析在时变多径瑞利衰落通道中

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Based on Alamouti code, Lee et al proposed two-branch transmit diversity OFDM systems, namely, space-time block coded OFDM (STBC-OFDM) and space-frequency block coded OFDM (SFBC-OFDM). However, they employed the simple maximum-likelihood (SML) detector, which was designed under the assumption that the channel is static over the duration of a space-time/frequency codeword. Therefore, STBC-OFDM/SFBC-OFDM suffers from the high time/frequency-selectivity of the wireless mobile fading channel. In our work, in addition to the original SML detector, three novel detectors, proposed by Vielmon et al., are applied to improve the two-branch TDBC-OFDM systems. Additionally, assuming sufficient cyclic prefix (CP), the performances of all systems in spatially uncorrelated time-varying multipath Rayleigh fading channels are evaluated by theoretical derivation and computer simulation, as well. Numerical results have revealed that significant performance improvement can be achieved even when the systems are operated in highly selective channels.
机译:基于Alamouti Code,Lee等,提出了两分支发射多样性OFDM系统,即空时块编码OFDM(STBC-OFDM)和空间频率块编码OFDM(SFBC-OFDM)。然而,它们采用了简单的最大似然(SML)检测器,该检测器是在空时/频率码字的持续时间内静态的假设设计的。因此,STBC-OFDM / SFBC-OFDM遭受无线移动衰落通道的高时间/频率选择性。在我们的工作中,除了原始的SML检测器外,还应用了三种新的探测器,由Vielmon等人提出,用于改善双分支TDBC-OFDM系统。另外,假设足够的循环前缀(CP),通过理论推导和计算机仿真,评估空间不相关的时变多径瑞利渐次传输信道中所有系统的性能。数值结果表明,即使在高选择性通道中操作系统,也可以实现显着的性能改善。

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