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Low-Complexity Symbol Detection and Interference Cancellation for OTFS System

机译:OTFS系统的低复杂性符号检测和干扰取消

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摘要

Orthogonal time frequency space (OTFS) is a two-dimensional modulation scheme realized in the delay-Doppler domain, which targets the robust wireless transmissions in high-mobility environments. In such scenarios, OTFS signal suffers from multipath channel with continuous Doppler spread, which results in significant inter-symbol interference and inter-Doppler interference (IDI). In this article, we analyze the interference generation mechanism, and compare statistical distributions of the IDI in two typical cases, i.e., limited-Doppler-shift channel and continuous-Doppler-spread channel (CoDSC). Focusing on the OTFS signal transmission over the CoDSC, our study firstly indicates that the widespread IDI incurs a computational burden for the element-wise detector like the message passing in the state-of-the-art works. Addressing this challenge, we propose a block-wise OTFS receiver by exploiting the structure and characteristics of the OTFS transmission matrix. In the receiver, we deliberately design an iteration strategy among the least squares minimum residual based channel equalizer, reliability-based symbol detector and interference eliminator, which can realize fast convergence by leveraging the sparsity of channel matrix. The simulations demonstrate that, in the CoDSC, the proposed scheme achieves much less detection error, and meanwhile reduces the computational complexity by an order of magnitude, compared with the state-of-the-art OTFS receivers.
机译:正交时间频率空间(OTF)是在延迟 - 多普勒域中实现的二维调制方案,其针对高移动环境中的强大无线传输。在这种情况下,OTFS信号遭受了具有连续多普勒扩展的多径通道,这导致了显着的符号间干扰和多普勒互补者干扰(IDI)。在本文中,我们分析干扰生成机制,并在两个典型情况下比较IDI的统计分布,即限制 - 多普勒 - 移位通道和连续多普勒 - 扩展信道(CODSC)。专注于OTFS信号传输在CODSC上,我们的研究首先表明广泛的IDI突出了元素-Wise检测器的计算负担,如在最先进的作品中传递的消息。解决这一挑战,我们通过利用OTFS传输矩阵的结构和特性来提出块状OTFS接收器。在接收器中,我们故意在最小二乘最小剩余基于信道均衡器,基于可靠性的符号检测器和干扰消除器之间设计迭代策略,这可以通过利用信道矩阵的稀疏来实现快速收敛。该模拟表明,在CODSC中,所提出的方案达到更少的检测误差,同时与最先进的OTFS接收器相比,通过幅度的数量级降低计算复杂度。

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