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首页> 外文期刊>IEEE transactions on wireless communications >A quasi-orthogonal group space-time architecture to achieve a better diversity-multiplexing tradeoff
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A quasi-orthogonal group space-time architecture to achieve a better diversity-multiplexing tradeoff

机译:准正交群时空架构,以实现更好的分集复用权衡

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Most existing MIMO (multiput-input multiput-output) schemes optimize only either the diversity gain or the multiplexing gain. To obtain a good tradeoff between these two, the quasi-orthogonal group space-time (QoGST) architecture is proposed, wherein the transmit stream is subgrouped but encoded via an inter-group space-time block encoder, with group interference suppression at the receiver. This paper also considers another combined space-time coding and layered space-time architecture, which we refer to as group layered space-time (GLST), where space-time block coding is employed within each group. Under the assumption of Rayleigh fading and a prior perfect channel state information at the receiver, a performance analysis will demonstrate that both QoGST and GLST can achieve a good diversity-multiplexing tradeoff. QoGST is even superior to GLST. Simulation results will validate our analysis and further show that compared to the existent layered space-time block code (LSTBC) scheme, both QoGST and GLST can achieve a significant performance gain
机译:大多数现有的MIMO(多输入多输出)方案仅优化分集增益或多路复用增益。为了在这两者之间取得良好的折衷,提出了准正交组空时(QoGST)架构,其中将发送流进行分组,但通过组间空时块编码器进行编码,并在接收机处抑制组干扰。本文还考虑了另一种组合的空时编码和分层空时架构,我们将其称为组分层空时(GLST),其中在每个组内采用空时分组编码。在瑞利衰落和接收机先验完美信道状态信息的假设下,性能分析将证明QoGST和GLST都可以实现良好的分集复用权衡。 QoGST甚至优于GLST。仿真结果将验证我们的分析结果,并进一步表明,与现有的分层空时分组码(LSTBC)方案相比,QoGST和GLST均可实现显着的性能提升

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