Low-Complexity Detection of M-ary PSK Faster-than-Nyquist Signaling

E. Bedeer, H. Yanikomeroglu, M. Ahmed
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引用次数: 7

Abstract

Faster-than-Nyquist (FTN) signaling is a promising non-orthogonal physical layer transmission technique to improve the spectral efficiency of future communication systems but at the expense of intersymbol-interference (ISI). In this paper, we investigate the detection problem of FTN signaling and formulate the sequence estimation problem of any M-ary phase shift keying (PSK) FTN signaling as an optimization problem that turns out to be non-convex and nondeterministic polynomial time (NP)-hard to solve. We propose a novel algorithm, based on concepts from semidefinite relaxation (SDR) and Gaussian randomization, to detect any M-ary PSK FTN signaling in polynomial time complexity regardless of the constellation size M or the ISI length. Simulation results show that the proposed algorithm strikes a balance between the achieved performance and the computational complexity. Additionally, results show the merits of the proposed algorithm in improving the spectral efficiency when compared to Nyquist signaling and the state-of-the-art schemes from the literature. In particular, when compared to Nyquist signaling at the same error rate and signal-to-noise ratio, our scheme provides around 17% increase in the spectral efficiency at a roll-off factor of 0.3.
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比nyquist信令更快的m - mary PSK低复杂度检测
超奈奎斯特(FTN)信令是一种很有前途的非正交物理层传输技术,可以提高未来通信系统的频谱效率,但代价是牺牲符号间干扰(ISI)。本文研究了FTN信令的检测问题,并将任意m阶相移键控(PSK) FTN信令的序列估计问题描述为一个难以求解的非凸非确定性多项式时间(NP)优化问题。本文提出了一种基于半定松弛(SDR)和高斯随机化概念的新算法,用于检测任何具有多项式时间复杂度的M-ary PSK FTN信令,而不考虑星座大小M或ISI长度。仿真结果表明,该算法在性能和计算复杂度之间取得了很好的平衡。此外,与奈奎斯特信号和文献中最先进的方案相比,结果表明所提出的算法在提高频谱效率方面具有优点。特别是,与相同错误率和信噪比的奈奎斯特信号相比,我们的方案在滚降系数为0.3的情况下,频谱效率提高了17%左右。
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