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首页> 外文期刊>Journal of Telecommunications and Information Technology >Pilot Design for Sparse Channel Estimation in Orthogonal Frequency Division Multiplexing Systems
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Pilot Design for Sparse Channel Estimation in Orthogonal Frequency Division Multiplexing Systems

机译:正交频分复用系统中稀疏信道估计的导频设计

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摘要

Orthogonal Frequency Division Multiplexing (OFDM) is a well-known technique used in modern wide band wireless communication systems. Coherent OFDM systems achieve its advantages over a multipath fading channel, if channel impulse response is estimated precisely at the receiver. Pilot-aided channel estimation in wide band OFDM systems adopts the recently explored compressive sensing technique to decrease the transmission overhead of pilot subcarriers, since it exploits the inherent sparsity of the wireless fading channel. The accuracy of compressive sensing techniques in sparse channel estimation is based on the location of pilots among OFDM subcarriers. A sufficient condition for the optimal pilot selection from Sylow sub- groups is derived. A Sylow subgroup does not exist for most practical OFDM systems. Therefore, a deterministic pilot search algorithm is described to select pilot locations based on minimizing coherence, along with minimum variance. Simulation results reveal the effectiveness of the proposed algorithm in terms of bit error rate, compared to the existing solutions.
机译:正交频分复用(OFDM)是现代宽带无线通信系统中使用的公知技术。如果在接收器处精确地估计信道脉冲响应,则相干的OFDM系统可以通过多径衰落通道实现其优点。宽带OFDM系统中的导频辅助信道估计采用最近探索的压缩传感技术来降低导频子载波的传输开销,因为它利用无线衰落信道的固有稀疏性。稀疏信道估计中的压缩感测技术的准确性基于OFDM子载波之间的导频的位置。从Sylow子组的最佳导频选择的充分条件是衍生的。对于大多数实际的OFDM系统,不存在Sylow子组。因此,描述了确定型导频搜索算法来基于最小化相干性,以及最小方差来选择导频位置。仿真结果揭示了与现有解决方案相比误差率方面所提出的算法的有效性。

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