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首页> 外文期刊>Proceedings of the IEEE >Near-Instantaneously Adaptive HSDPA-Style OFDM Versus MC-CDMA Transceivers for WIFI, WIMAX, and Next-Generation Cellular Systems
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Near-Instantaneously Adaptive HSDPA-Style OFDM Versus MC-CDMA Transceivers for WIFI, WIMAX, and Next-Generation Cellular Systems

机译:适用于WIFI,WIMAX和下一代蜂窝系统的近乎自适应的HSDPA样式OFDM与MC-CDMA收发器

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Burts-by-burst (BbB) adaptive high-speed down-link packet access (HSDPA) style multicarrier systems are reviewed, identifying their most critical design aspects. These systems exhibit numerous attractive features, rendering them eminently eligible for employment in next-generation wireless systems. It is argued that BbB-adaptive or symbol-by-symbol adaptive orthogonal frequency division multiplex (OFDM) modems counteract the near instantaneous channel quality variations and hence attain an increased throughput or robustness in comparison to their fixed-mode counterparts. Although they act quite differently, various diversity techniques, such as Rake receivers and space-time block coding (STBC) are also capable of mitigating the channel quality variations in their effort to reduce the bit error ratio (BER), provided that the individual antenna elements experience independent fading. By contrast, in the presence of correlated fading imposed by shadowing or time-variant multiuser interference, the benefits of space-time coding erode and it is unrealistic to expect that a fixed-mode space-time coded system remains capable of maintaining a near-constant BER. Following a basic portrayal of adaptive OFDM, the paper investigates a combined system constituted by a constant-power adaptive modem employing space-time coded diversity techniques in the context of both OFDM and multicarrier code division multiple access (MC-CDMA). The combined system is configured to produce a constant uncoded BER and exhibits virtually error-free performance when a turbo convolutional code is concatenated with a space-time block code. Again, it was found that the advantage of rendering the multiple-input multiple-output (MIMO)-aided modem BbB-adaptive erodes, when the affordable system complexity facilitates the implementation of multiple transmitters and receivers, if it can be ensured that no shadowing and no multiuser interference fluctuation is experienced. By contrast, in the presence- of these impairments, only BbB-adaptive transceivers can provide a near-constant BER.
机译:逐个脉冲(BbB)自适应高速下行链路分组访问(HSDPA)样式的多载波系统进行了审查,确定了它们最关键的设计方面。这些系统具有众多吸引人的功能,因此非常适合在下一代无线系统中使用。有人认为,BbB自适应或逐个符号的自适应正交频分复用(OFDM)调制解调器抵消了近乎瞬时的信道质量变化,因此与固定模式相比,吞吐量或健壮性有所提高。尽管它们的行为截然不同,但各种分集技术(例如Rake接收机和空时分组编码(STBC))也能够缓解信道质量变化,以降低比特误码率(BER),前提是各个天线元素会经历独立的衰落。相比之下,在存在由阴影或时变多用户干扰引起的相关衰落的情况下,时空编码的好处会受到侵蚀,并且期望固定模式时空编码系统仍然能够保持接近恒定的BER。遵循自适应OFDM的基本描述,本文研究了由恒定功率自适应调制解调器构成的组合系统,该系统在OFDM和多载波码分多址(MC-CDMA)的背景下采用空时编码分集技术。组合系统配置为产生恒定的未编码BER,并且在Turbo卷积码与空时分组码连接时表现出几乎无差错的性能。再次发现,在负担得起的系统复杂性有助于实现多个发送器和接收器的情况下,如果可以确保没有阴影,则呈现多输入多输出(MIMO)辅助的调制解调器BbB自适应侵蚀的优势。并且没有多用户干扰波动。相反,在存在这些损害的情况下,只有支持BbB的收发器才能提供近乎恒定的BER。

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