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Cascaded doubly-selective channel estimation in multi-relay AF OFDM transmissions

机译:多中继AF OFDM传输中的级联双选信道估计

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This paper studies the problem of channel estimation in amplify-and-forward (AF) multi-relay transmissions over time- and frequency-selective (doubly selective) channels. To avoid two separate channel estimation processes of source-to-relay and relay-to-destination links, a cascaded doubly selective channel model is formulated to characterize the source-to-relay-to-destination (5722?) channel. Time-varying 572.2? channel gains are projected onto different basis expansion functions to attain dimension reduction in the formulated channel model. In estimating the cascaded 5722? channel responses at the destination, the presence of multiple relays gives rise to the ambiguity problem due to the use of a single pilot signal transmitted from the source. To circumvent this problem, time-variant amplifying factors at relays are introduced to be used in maximum-likelihood-based cascaded multi-relay channel estimation. Simulation results show that basis expansion models (BEMs) and time-variant amplifying factors can efficiently facilitate a single estimation process of different cascaded doubly selective 5722? channels in a multi-relay system. Furthermore, for a fixed pilot overhead, a relationship between space diversity gains (with multiple relays) and channel estimation accuracy is also numerically illustrated.
机译:本文研究了在时间和频率选择(双重选择)信道上的放大转发(AF)多中继传输中的信道估计问题。为了避免源到中继和中继到目的地链路的两个单独的信道估计过程,建立了一个级联的双重选择信道模型来表征源到中继到目的地(5722′)信道。时变572.2?将通道增益投影到不同的基础扩展函数上,以在公式化的通道模型中实现降维。在估算级联5722时?在目的地的信道响应中,由于使用了从信源发送的单个导频信号,因此存在多个中继会引起歧义问题。为了解决这个问题,引入了中继器的时变放大因子,以用于基于最大似然的级联多中继信道估计。仿真结果表明,基本扩展模型(BEM)和时变放大因子可以有效地促进不同级联双选择5722?的单个估计过程。多中继系统中的通道。此外,对于固定的导频开销,还用数字示出了空间分集增益(具有多个中继)和信道估计精度之间的关系。

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