Partially Cooperative MIMO Channels with Scaled Identity Transmit Covariance

E. Stauffer, D. Tujkovic, A. Paulraj
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Abstract

Recently, there has been a great deal of interest on the performance of MIMO wireless systems as the MIMO fading channel offers an increase in capacity and reliability over that of a SISO channel. When channel state information is not known at the transmitter, the level of performance obtained depends on the degree of cooperation between the transmit antennas. With no cooperation between the antennas, horizontally coded spatial multiplexing is diversity suboptimal since each message bit is encoded and transmitted by only one antenna. An optimal scheme, on the other hand, codes message bits across all transmit antennas. This work generalizes and quantifies the level of cooperation between transmit antennas with the cooperation parameter R c and then finds upper and lower bounds for the achievable data rates for such a system using a scaled identity transmit covariance matrix. These bounds are found to be tight for certain values of Rc and the data rate Rt. Finally, these bounds are useful in computing the outage probability and diversity order of partially cooperative MIMO systems when channel state information is not known at the transmitter
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缩放身份传输协方差的部分合作MIMO信道
最近,人们对MIMO无线系统的性能产生了很大的兴趣,因为MIMO衰落信道比SISO信道提供了容量和可靠性的增加。当发射机不知道信道状态信息时,所获得的性能水平取决于发射天线之间的合作程度。在天线间无协同的情况下,水平编码空间复用是分集次优的,因为每个消息位仅由一个天线进行编码和传输。另一方面,最优方案是在所有发射天线上对消息位进行编码。本文用合作参数rc概括和量化了发射天线之间的合作水平,然后使用缩放单位发射协方差矩阵找到了这种系统的可实现数据速率的上界和下界。这些边界对于一定的Rc值和数据速率rt值是紧的。最后,这些边界对于计算部分合作MIMO系统在发送端信道状态信息未知时的中断概率和分集顺序是有用的
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