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Hybrid Vector Perturbation Precoding: The Blessing of Approximate Message Passing

机译:混合矢量摄动预编码:近似消息传递的祝福

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摘要

Vector perturbation (VP) precoding is a promising technique for multiuser communication systems operating in the downlink. In this work, we introduce a hybrid framework to improve the performance of lattice reduction (LR) aided precoding in VP. First, we perform a simple precoding using zero forcing (ZF) or successive interference cancellation (SIC) based on a reduced lattice basis. Since the signal space after LR-ZF or LR-SIC precoding can be shown to be bounded to a small range, then along with sufficient orthogonality of the lattice basis guaranteed by LR, they collectively pave the way for the subsequent application of an approximate message passing (AMP) algorithm, which further boosts the performance of any suboptimal precoder. Our work shows that the AMP algorithm can be beneficial for a lattice decoding problem whose data symbols lie in integers$mathbb {Z}$and entries of the lattice basis may not be i.i.d. Gaussian. Numerical results confirm that the low-complexity AMP algorithm can improve the symbol error rate performance of LR-aided precoding significantly. Finally, the hybrid scheme is also proven effective when solving the data detection problem of massive MIMO systems without using LR.
机译:对于在下行链路中运行的多用户通信系统,矢量扰动(VP)预编码是一种很有前途的技术。在这项工作中,我们介绍了一种混合框架,以改善VP中晶格缩减(LR)辅助预编码的性能。首先,我们基于缩减的晶格,使用零强制(ZF)或连续干扰消除(SIC)执行简单的预编码。由于可以将LR-ZF或LR-SIC预编码后的信号空间限制在很小的范围内,因此,再加上LR所保证的足够的格子基础正交性,它们共同为后续应用近似消息铺平了道路。传递(AMP)算法,进一步提高了任何次优预编码器的性能。我们的工作表明,AMP算法可以解决数据符号位于整数中的点阵解码问题 n $ mathbb {Z} $ n,可能不输入晶格基础的条目高斯。数值结果表明,低复杂度AMP算法可以显着提高LR辅助预编码的符号误码率性能。最后,在解决大型MIMO系统不使用LR的数据检测问题时,混合方案也被证明是有效的。

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