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Novel transmit diversity approach combining SFBC and CDD in LTE-Advanced system

机译:LTE-Advanced系统中结合SFBC和CDD的新型发射分集方法

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This paper addresses a novel open-loop transmit diversity transmission scheme combining space-frequency block coding with cyclic delay diversity for MIMO-OFDM systems, particularly for the downlink of LTE-Advanced system to exploit full diversity freeing of adding extra overhead of pilot sequence, which is anticipated widely deployed in the near future. The combination of SFBC and CDD is able to introduce additional time diversity and hence significant gains from the spatial, frequency, time diversity gains can be efficiently exploited associated with it. Furthermore, for eight transmit antenna case, numerical simulation results under different modulation modes and coding rates scenarios are given to show that the proposed scheme outperforms previous schemes such as pure quasi-orthogonal space-frequency coded OFDM (QO-SFBC) and CDD scheme in terms of block error rate (BLER) and therefore the new scheme enables transmission reliability and coverage without significantly increasing system complexity.
机译:本文针对MIMO-OFDM系统,特别是LTE-Advanced系统的下行链路,提出了一种将空频块编码与循环延迟分集相结合的新型开环发射分集传输方案,以充分利用分集,从而增加导频序列的额外开销,预计将在不久的将来广泛部署。 SFBC和CDD的结合能够引入额外的时间分集,因此可以有效地利用空间,频率,时间分集增益中的大量收益。此外,对于八种发射天线情况,在不同调制模式和编码速率情况下的数值仿真结果表明,所提出的方案优于以前的方案,如纯准正交空频编码OFDM(QO-SFBC)和CDD方案。因此,新方案可在不显着增加系统复杂性的情况下实现传输可靠性和覆盖范围。

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