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A Time-Domain Channel Impulse Response Estimation Method for an OFDM Sounding System

机译:OFDM探测系统的时域信道冲激响应估计方法

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Channel characterization is essential to develop a reliable communication system. In this article, a time-domain cyclic correlation-based channel impulse response (CIR) estimation technique is proposed for frequency-domain pilot aided orthogonal frequency division multiplexing (OFDM) sounding systems. The proposed system provides an improved mean squared error (MSE) as compared to least square (LS) and minimum least square (MMSE) techniques. In this paper, periodic comb-type pilots are considered. The time-domain cyclic correlation results of the up-sampled frequency-domain pilot sequence contain multiple copies of CIR with a length equal to the sequence length. The aggregated response from various copies of CIR in one symbol results in a better CIR estimation. The proposed system provides better performance with very less computational complexity. The performance of the system is evaluated in the Rayleigh channel. The results show that the proposed method can be a better alternative to LS and MMSE technique for OFDM sounding systems.
机译:信道表征对于开发可靠的通信系统至关重要。本文针对频域导频辅助正交频分复用(OFDM)探测系统,提出了一种基于时域循环相关的信道冲激响应(CIR)估计技术。与最小二乘(LS)和最小最小二乘(MMSE)技术相比,所提出的系统提供了改进的均方误差(MSE)。在本文中,考虑了周期性梳型导频。上采样的频域导频序列的时域循环相关结果包含CIR的多个副本,其长度等于序列长度。在一个符号中来自各种CIR副本的汇总响应导致更好的CIR估计。所提出的系统以更少的计算复杂度提供了更好的性能。在瑞利信道中评估系统的性能。结果表明,所提出的方法可以更好地替代LS或MMSE技术的OFDM探测系统。

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