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Unitary space-time modulation for multiple-antenna communications in Rayleigh flat fading

机译:瑞利平坦衰落中用于多天线通信的时空调制

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Motivated by information-theoretic considerations, we propose a signaling scheme, unitary space-time modulation, for multiple-antenna communication links. This modulation is ideally suited for Rayleigh fast-fading environments, since it does not require the receiver to know or learn the propagation coefficients. Unitary space-time modulation uses constellations of T/spl times/M space-time signals (/spl Phi//sub i/, l=1, ..., L), where T represents the coherence interval during which the fading is approximately constant, and M>T is the number of transmitter antennas. The columns of each /spl Phi//sub i/ are orthonormal. When the receiver does not know the propagation coefficients, which between pairs of transmitter and receiver antennas are modeled as statistically independent, this modulation performs very well either when the signal-to-noise ratio (SNR) is high or when T/spl Gt/M. We design some multiple-antenna signal constellations and simulate their effectiveness as measured by bit-error probability with maximum-likelihood decoding. We demonstrate that two antennas have a 6-dB diversity gain over one antenna at 15-dB SNR.
机译:基于信息理论的考虑,我们提出了一种用于多天线通信链路的信令方案,即单时空调制。该调制非常适合瑞利快速衰落环境,因为它不需要接收机知道或了解传播系数。 ary时空调制使用的星座图为T / spl次/ M个时空信号(/ spl Phi // sub i /,l = 1,...,L),其中T表示衰落在其中的相干间隔近似恒定,并且M> T是发射机天线的数量。每个/ spl Phi // sub i /的列是正交的。当接收器不知道在成对的发射器和接收器天线之间的传播系数被建模为统计独立时,在信噪比(SNR)高或T / spl Gt / M.我们设计了一些多天线信号星座,并通过最大似然解码通过误码概率测量来模拟其有效性。我们证明,在15 dB SNR的情况下,两根天线在一根天线上具有6 dB的分集增益。

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