A novel lattice reduction aided linear precoding Scheme

Wei Zhang, Xiaoli Ma
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Abstract

To cope with the deleterious channel fading effects on the system performance, diversity-enriched transmitters and receivers have well-appreciated merits. When the channel state information is available at the transmitter, precoders are designed to suppress the channel effect and enable the diversity and low-complexity receiver designs. In addition, the peak-to-average power ratio (PAR) issue has to be considered from the energy perspective. In this paper, after reviewing existing precoding designs by providing the diversity and PAR results, we present a low-complexity transceiver design with a geometric mean decomposition based precoder at the transmitter and a novel lattice reduction aided equalizer at the receiver. The performance is analyzed in terms of diversity and the PAR. The theoretical analysis is corroborated by computer simulations.
一种新的格约简辅助线性预编码方案
为了应对信道衰落对系统性能的不利影响,增强分集的发射机和接收机具有很好的优点。当信道状态信息在发送端可用时,设计预编码器来抑制信道效应,从而实现分集和低复杂度的接收机设计。此外,还必须从能源的角度考虑峰均功率比(PAR)问题。在本文中,通过提供分集和PAR结果来回顾现有的预编码设计后,我们提出了一种低复杂度的收发器设计,在发送端使用基于几何平均分解的预编码器,在接收端使用新颖的晶格减少辅助均衡器。从分集度和PAR两方面分析了系统的性能,并通过计算机仿真验证了理论分析的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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