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Power-allocation policy and optimized design of multiple-antenna systems with imperfect channel estimation

机译:信道估计不完善的多天线系统功率分配策略与优化设计

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摘要

We here focus on the optimized design and performance of Rayleigh-faded multiple-antenna multiple-input-multiple-output systems when both transmitter and receiver share imperfect (i.e., error impaired) channel estimates computed via training sequences. In particular, according to the emerging principle of the so-called synchronized detection, for this operating scenario we propose a simple water-filling (WF)-like strategy for allocating power over transmit antennas and test its actual performance. Afterward, we introduce and evaluate some related figures of merit summarizing the overall system's performance and use these last for noting effective system's design guidelines. In particular, some optimized solutions for power-versus-bandwidth efficiency tradeoff are presented and their validity limits are debated. All the developed results explicitly take into account the actual reliability of the achievable channel estimates.
机译:当发射器和接收器共享通过训练序列计算出的不完美(即,误差减弱)的信道估计时,我们将重点放在瑞利衰落多天线多输入多输出系统的优化设计和性能上。特别是,根据所谓的同步检测的新兴原理,对于这种操作方案,我们提出了一种类似于注水(WF)的简单策略,用于在发射天线上分配功率并测试其实际性能。随后,我们介绍并评估了一些相关的性能指标,总结了整个系统的性能,并使用最后这些来指出有效的系统设计准则。特别是,提出了一些功率与带宽效率权衡的优化解决方案,并讨论了其有效性极限。所有开发的结果都明确考虑了可实现的信道估计的实际可靠性。

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