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Iterative Channel Estimation And Data Detection in OTFS Using Superimposed Pilots

机译:叠加飞行员OTFS中的迭代信道估计和数据检测

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This work proposes a superimposed pilot (SP)-based channel estimation and data detection framework for orthogonal time-frequency space (OTFS) scheme, wherein low-powered pilots are superimposed on to data symbols in the delay-Doppler domain. We propose an iterative channel estimation and data detection design for SP-OTFS systems which, unlike the existing OTFS designs, does not designate any slots for pilots, which improves its spectral efficiency (SE). The proposed design iterates between message-passing-aided data detection and data-aided channel estimation. The data-detection and channel-estimation steps of the proposed design exploit the OTFS channel sparsity, which reduces its computational complexity. We numerically show that the proposed design has superior SE than the two state-of-the-art OTFS channel estimation and data detection designs.
机译:这项工作提出了一种叠加的导频(SP)基于正交时频空间(OTF)方案的基于频率(SP)的信道估计和数据检测框架,其中低功耗的导频被叠加到延迟多普勒域中的数据符号。 我们为SP-OTFS系统提出了一种迭代信道估计和数据检测设计,这与现有OTF设计不同,不指定用于导频的任何插槽,这提高了其频谱效率(SE)。 所提出的设计在消息传递辅助数据检测和数据辅助信道估计之间迭代。 所提出的设计的数据检测和通道估计步骤利用OTFS信道稀疏性,这降低了其计算复杂度。 我们在数字上表明所提出的设计具有优于两个最先进的OTFS信道估计和数据检测设计。

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