Widely linear sphere decoding by exploiting the hidden properties of PSK signals

Yuehua Ding, Nanxi Li, Yide Wang, Suili Feng
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引用次数: 5

Abstract

Widely linear processing (WLP) can provide attractive performance improvement in wireless communication systems. However, performance improvement brought by WLP is mainly achieved by exploiting signal's non-circularity, which leads to the fact that existing works on WLP are mainly confined to the cases related to non circular signals or improper signals with imbalanced I/Q components. In this paper, WLP for circular signals, such as PSK signals, is investigated by exploiting the hidden properties of PSK signals. The hidden properties of PSK signals are firstly studied, and a unified mathematical model is derived to describe the hidden properties of PSK signals. Furthermore, a widely linear sphere decoding (WLSD) algorithm exploiting PSK signals' hidden properties is proposed for MIMO systems. Compared to traditional sphere decoding (SD), WLSD has little performance loss, and it transforms the traditional SD searching for the true transmitted vector into the shrunk searching for the corresponding rotation vector, the candidate rotation vectors of WLSD are only (1/2)NT of SD candidate vectors. Simulation results show that the proposed algorithm can achieve quasi-optimal BER performance, while the computational complexity is significantly reduced by more than a half compared with Schnorr-Euchner sphere decoder.
利用PSK信号的隐藏特性实现宽线性球解码
宽线性处理(WLP)在无线通信系统中具有显著的性能改进作用。然而,WLP带来的性能提升主要是通过利用信号的非圆性来实现的,这导致现有的WLP工作主要局限于非圆信号或I/Q分量不平衡的不当信号的情况。本文利用PSK信号的隐藏特性,研究了圆信号(如PSK信号)的WLP问题。首先研究了PSK信号的隐藏特性,并推导了一个统一的数学模型来描述PSK信号的隐藏特性。此外,针对MIMO系统,提出了一种利用PSK信号隐藏特性的宽线性球解码算法。与传统的球面解码(SD)相比,WLSD的性能损失很小,它将传统的寻找真实传输向量的SD解码转换为寻找相应旋转向量的压缩解码,WLSD的候选旋转向量仅为SD候选向量的(1/2)NT。仿真结果表明,该算法可以达到准最优的误码率,计算复杂度比施诺-欧希纳球解码器显著降低一半以上。
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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