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Cross-layer Adaptive Modulation And Coding Design For Space-time Block Coded Mimo-ofdm Systems

机译:时空分组编码的Mimo-ofdm系统的跨层自适应调制和编码设计

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摘要

This paper developed a cross-layer adaptive modulation and coding (AMC) design for space-time block coded (STBC) MIMO-OFDM systems, which combines the AMC at the physical layer with an automatic repeat request (ARQ) protocol at the data link layer, in order to maximize spectral efficiency under specified delay and packet error ratio (PER) constraints. The transmission mode for each subcarrier is updated frame-by-frame to match the time-varying channel conditions, in order to take full advantage of the OFDM systems. The proposed cross-layer AMC design is also incorporated with STBC to further improve the system performance. Numerical results have demonstrated that retransmission at the data link layer alleviate rigorous error-control requirements at the physical layer and thereby allows higher data rate transmission. It is shown that this cross-layer design has achieved considerable spectral efficiency gain in comparison with traditional AMC without cross-layer design. Note that increasing the maximum number of retransmissions beyond one has little effect on spectrum efficiency and will cause longer system delay. This suggests that a desirable trade-off between spectral efficiency and delay in the STBC MIMO-OFDM system is achieved by a small number of retransmission.
机译:本文开发了一种用于空时分组编码(STBC)MIMO-OFDM系统的跨层自适应调制和编码(AMC)设计,该设计将物理层的AMC与数据链路上的自动重发请求(ARQ)协议相结合层,以便在指定的延迟和分组错误率(PER)约束下最大化频谱效率。每个子载波的传输模式逐帧更新,以匹配时变信道条件,以便充分利用OFDM系统。所建议的跨层AMC设计也与STBC合并在一起,以进一步提高系统性能。数值结果表明,在数据链路层进行重传可以缓解物理层上严格的错误控制要求,从而可以实现更高的数据速率传输。结果表明,与没有跨层设计的传统AMC相比,该跨层设计已获得了可观的频谱效率增益。请注意,将最大重传次数增加到一个以上对频谱效率影响很小,并且会导致更长的系统延迟。这表明,通过少量的重发,可以在STBC MIMO-OFDM系统中实现频谱效率与延迟之间的理想平衡。

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