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Spectrally efficient transmit diversity scheme for differentially modulated multicarrier transmissions

机译:差分调制多载波传输的频谱有效传输分集方案

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摘要

Cyclic delay diversity is a simple, yet effective, transmit diversity scheme for multicarrier based transmissions employing coherent digital linear modulation schemes. It is shown that, for satisfactory operation, the scheme requires additional channel estimation overhead compared to single antenna and traditional space time coded transmissions owing to the inherent increase in frequency selective fading. The authors analyse the additional channel estimation overhead requirement for a Hiperlan #2 style system with two transmit antennas operating in a NLOS indoor environment. The analysis shows that an additional overhead of 500% is required for the candidate system compared to a single antenna system. It is also shown that by employing differential modulation the channel estimation overhead can be eliminated with significant performance improvement compared to a system employing a practical channel estimation scheme. This novel combination, termed 'differentially modulated cyclic delay diversity', is shown to yield a highly spectral efficient, yet simple transmit diversity solution for multi-carrier transmissions
机译:对于采用相干数字线性调制方案的基于多载波的传输,循环延迟分集是一种简单而有效的传输分集方案。结果表明,由于频率选择性衰落的固有增加,与单天线和传统的空时编码传输相比,为了令人满意的操作,该方案需要额外的信道估计开销。作者分析了具有在NLOS室内环境中工作的两个发射天线的Hiperlan#2型系统的额外信道估计开销需求。分析表明,与单天线系统相比,候选系统需要500%的额外开销。还显示出,与采用实际信道估计方案的系统相比,通过采用差分调制,可以消除信道估计开销,并且具有显着的性能改善。这种新颖的组合被称为“差分调制循环延迟分集”,被证明为多载波传输提供了一种频谱高效,简单的传输分集解决方案。

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