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Improved DFT-Based Channel Estimation for TDS-OFDM Wireless Communication Systems

机译:TDS-OFDM无线通信系统中基于DFT的改进信道估计

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摘要

This paper proposes an improved discrete Fourier transform (DFT)-based channel estimation technique for time domain synchronous orthogonal frequency division multiplexing (TDS-OFDM) communication systems. The proposed technique, based on the concept of significant channel tap detector (SCTD) scheme, can effectively improve the system performance of TDS-OFDM systems. The correlation of two successive preambles is employed to estimate the average noise power as the threshold for obtaining the SCTD threshold estimation error and loss path information in large delay spread channel environments. The proposed estimation scheme roughly predicts the noise power in order to choose the significant channel taps to estimate the channel impulse response. Some comparative simulations are given to show that the proposed technique has the potential to achieve bit error rate performance superior to that of the conventional least squares channel estimation.
机译:本文提出了一种改进的基于离散傅里叶变换(DFT)的时域同步正交频分复用(TDS-OFDM)通信系统信道估计技术。所提出的技术基于有效信道抽头检测器(SCTD)方案的概念,可以有效地提高TDS-OFDM系统的系统性能。在大延迟扩展信道环境中,使用两个连续前同步码的相关性来估计平均噪声功率,作为获得SCTD阈值估计误差和损耗路径信息的阈值。所提出的估计方案粗略地预测了噪声功率,以便选择有效的信道抽头来估计信道冲激响应。给出了一些比较仿真,以表明所提出的技术具有实现优于传统最小二乘信道估计的误码率性能的潜力。

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