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Transmitter and Receiver Window Designs for Orthogonal Time-Frequency Space Modulation

机译:发送器和接收器窗口设计用于正交时频空间调制

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In this paper, we investigate the impacts of transmitter and receiver windows on the performance of orthogonal time-frequency space (OTFS) modulation and propose window designs to improve the OTFS channel estimation and data detection performance. In particular, assuming ideal pulse shaping filters at the transceiver, we derive the impacts of windowing on the effective channel and its estimation performance in the delay-Doppler (DD) domain, the total average transmit power, and the effective noise covariance matrix. When the channel state information (CSI) is available at the transceiver, we analyze the minimum squared error (MSE) of data detection and propose an optimal transmitter window to minimize the detection MSE. The proposed optimal transmitter window can be interpreted as a mercury/water-filling power allocation scheme, where the mercury is firstly filled before pouring water to pre-equalize the time-frequency (TF) domain channels. When the CSI is not available at the transmitter but can be estimated at the receiver, we propose to apply a Dolph-Chebyshev (DC) window at either the transmitter or the receiver, which can effectively enhance the sparsity of the effective channel in the DD domain. Thanks to the enhanced DD domain channel sparsity, the channel spread due to the fractional Doppler is significantly reduced, which leads to a lower error floor in both channel estimation and data detection compared with that of rectangular window. Simulation results verify the accuracy of the obtained analytical results and confirm the superiority of the proposed window designs in improving the channel estimation and data detection performance over the conventional rectangular window design.
机译:在本文中,我们调查了发射器和接收器窗口对正交时频空间(OTF)调制性能的影响,并提出窗口设计,提高OTFS信道估计和数据检测性能。特别是,假设收发器处的理想脉冲整形滤波器,我们从延迟多普勒(DD)域,总平均发射功率和有效噪声协方差矩阵中导出窗口对有效通道的影响及其估计性能。当信道状态信息(CSI)在收发器上可用时,我们分析数据检测的最小平方误差(MSE),并提出最佳的发射器窗口以最小化检测MSE。所提出的最佳变送器窗口可以被解释为汞/水填充功率分配方案,其中汞首先填充汞,然后倒入水中以预级均衡时频(TF)域通道。当CSI在发射器处不可用但可以在接收器处估计时,我们建议在发射器或接收器处应用Dolph-Chebyshev(DC)窗口,这可以有效地增强DD中有效通道的稀疏性领域。由于增强的DD域通道稀疏性,由于分数多普勒引起的信道扩展显着减少,这导致了与矩形窗口相比的信道估计和数据检测中的误差楼。仿真结果验证了所获得的分析结果的准确性,并确认所提出的窗口设计的优越性,以提高传统矩形窗口设计的信道估计和数据检测性能。

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