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Analysis of Phase-Sweeping Multiantenna Systems in Slow Fading Channels

机译:慢衰落信道中的扫频多天线系统分析

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We investigate the effective temporal diversity property of a multiantenna system employing the phase sweeping transmit diversity (PSTD) scheme in a slow fading channel. We analyze how the number of transmit antennas used for phase sweeping and the sweeping frequency spacing affect the normalized time mean-square covariance (NTMSV) value which characterizes the temporal diversity of a channel. It is revealed that, in some situations, given the maximum sweeping frequency, there is an optimal antenna number that maximizes the temporal diversity, and the NTMSV can be used to find the optimal antenna number. Although the temporal diversity provided by PSTD is at the expense of the spatial diversity, we show by analyzing the fundamental tradeoff between the spatial diversity and the temporal diversity that the overall diversity gain can be maintained when applying the PSTD technique. Numerical results show that, with low complexity receivers, the coded PSTD multiple antenna system is a promising candidate to exploit the possible diversity in slow fading channels.
机译:我们研究在慢衰落信道中采用相位扫描发射分集(PSTD)方案的多天线系统的有效时间分集特性。我们分析了用于相位扫描的发射天线数量和频率间隔如何影响表征信道时间分集的归一化时间均方协方差(NTMSV)值。结果表明,在某些情况下,在给定最大扫描频率的情况下,存在一个使时间分集最大的最佳天线数,并且可以使用NTMSV来找到最佳天线数。尽管PSTD提供的时间分集是以空间分集为代价的,但我们通过分析空间分集和时间分集之间的基本折衷表明,使用PSTD技术可以保持总体分集增益。数值结果表明,对于低复杂度的接收机,编码PSTD多天线系统是利用慢衰落信道中可能的分集的有前途的候选者。

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