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Enhanced DFT Interpolation-based Channel Estimation for OFDM Systems with Virtual Subcarriers

机译:具有虚拟子载波的OFDM系统的基于DFT插值的基于DFT插值的信道估计

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In practical OFDM systems, some virtual subcarriers are reserved for easing the requirements on the filter. In this case, the channel impulse response (CIR) estimated by DFT approaches appears a spectral leakage, which results in an error floor for the MSE performance. This paper proposes two enhanced DFT interpolation-based channel estimation methods, termed as EDFTI-CE-A and EDFTI-CE-B, based on the robust Wiener filtering, which can eliminate most of the leakage effect owning to the absence of pilot symbols in the virtual subcarriers and further suppress the effect of additive noise. The analysis and simulation results show that the proposed EDFTI-CE-A can almost eliminate the MSE floor of conventional DFTI-CE with small complexity increase and the proposed EDFTI-CE-B can achieve the same performance as linear MMSE channel estimator but with much lower computational complexity.
机译:在实际的OFDM系统中,一些虚拟子载波保留用于缓解滤波器的要求。在这种情况下,由DFT方法估计的信道脉冲响应(CIR)看起来是一种光谱泄漏,这导致用于MSE性能的错误底板。本文提出了两个基于增强的基于DFT插值的信道估计方法,称为EDFTI-CE-A和EDFTI-CE-B,基于稳健的维纳滤波,这可以消除所有泄漏效果,这些泄漏效果都存在于缺乏导频符号虚拟子载波并进一步抑制添加剂噪声的效果。分析和仿真结果表明,建议的EDFTI-CE-A几乎可以消除传统DFTI-CE的MSE底层,具有小的复杂性增加,所提出的EDFTI-CE-B可以实现与线性MMSE信道估计器相同的性能,但具有很多较低的计算复杂性。

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