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首页> 外文期刊>IEEE transactions on wireless communications >Constant Envelope Precoding by Interference Exploitation in Phase Shift Keying-Modulated Multiuser Transmission
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Constant Envelope Precoding by Interference Exploitation in Phase Shift Keying-Modulated Multiuser Transmission

机译:相移键控调制多用户传输中基于干扰的恒定包络预编码

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摘要

We introduce a new approach to constant-envelope precoding (CEP) based on an interference-driven optimization region for generic phase-shift-keying modulations in the multi-user (MU) multiple-input-multiple-output downlink. While conventional precoding approaches aim to minimize the multi-user interference (MUI) with a total sum-power constraint at the transmitter, in the proposed scheme we consider MUI as a source of additional energy to increase the signal-to-interference-and-noise-ratio at the receiver. In our studies, we focus on two different CEP approaches: a first technique, where the power at each antenna is fixed to a specific value, and a two-step approach, where we first relax the power constraints to be lower than a defined parameter and then enforce CEP transmission. The algorithms are studied in terms of computational costs, with a detailed comparison between the proposed approach and the classical interference suppression schemes from the literature. Moreover, we analytically derive a robust optimization region to counteract the effects of channel-state estimation errors. The presented schemes are evaluated in terms of achievable symbol error rate in a perfect and imperfect channel-state information scenario for different modulation orders. Our results show that the proposed techniques further extend the benefits of classical CEP by judiciously relaxing the optimization region.
机译:我们介绍了一种基于干扰驱动的优化区域的恒定包络预编码(CEP)的新方法,用于多用户(MU)多输入多输出下行链路中的通用相移键控调制。虽然传统的预编码方法旨在通过发射机处的总和功率约束来最小化多用户干扰(MUI),但在提出的方案中,我们将MUI视为增加能量的来源,以增加信号与干扰和干扰。接收器的噪声比。在我们的研究中,我们专注于两种不同的CEP方法:第一种技术,其中每个天线的功率固定为特定值;以及两步法,其中我们首先放宽功率约束,使其低于定义的参数然后强制执行CEP传输。根据计算成本对算法进行了研究,并对所提出的方法与文献中的经典干扰抑制方案进行了详细的比较。此外,我们从分析上得出了一个鲁棒的优化区域,以抵消信道状态估计误差的影响。在完美和不完美的信道状态信息场景下,针对不同的调制阶数,根据可实现的符号错误率对提出的方案进行了评估。我们的结果表明,通过谨慎地放宽优化区域,所提出的技术进一步扩展了经典CEP的优势。

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