移动OFDM系统非均匀导频辅助信道估计方法

D. Li, S. Feng, W. Ye, H. Zhuang
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引用次数: 3

摘要

提出了一种用于移动环境下OFDM系统的非均匀导频辅助信道估计技术。我们发现大多数先前研究的先决条件是使用等间隔导频模式和样本间隔通道。在实际系统中并非如此。在传统导频辅助估计方法的基础上,针对IEEE 802.16e OFDM系统,提出了一种改进的基于最小二乘准则的信道估计方法。在实际系统中,导频在频带中插入不均匀,非采样间隔多径延迟导致信道脉冲响应(CIR)在时域上泄漏。本文提出的非均匀导频辅助CE方法在频域进行,并使用线性模型来近似每个OFDM符号期间CIR在频域的时变特性。分析和仿真结果表明,该算法计算复杂度低,性能良好,在实际OFDM系统中具有实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uneven pilot-assisted channel estimation method for mobile OFDM systems
This paper proposes an uneven pilot-assisted channel estimation (CE) technique for OFDM systems in mobile environments. We find that the prerequisites of most previous studies are using an equal spaced pilots pattern and sample-spaced channels. This is not the case in practical systems. According to conventional pilot-assisted estimators, we develop an improved channel estimation method based on the criteria of least square (LS) for IEEE 802.16e OFDM systems. In this practical system, pilots are not evenly inserted in the frequency band and the non-sample-spaced multipath delay leads to channel impulse response (CIR) leakage in the time domain. The proposed uneven pilot-assisted CE method is conducted in the frequency domain and it uses a linear model to approximate the time-varying characteristic of CIR in the frequency domain during each OFDM symbol. Analysis and simulations demonstrate its low computational complexity, good performance and practicability in actual OFDM systems.
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