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首页> 外文期刊>IEEE Transactions on Signal Processing >Exploiting input cyclostationarity for blind channel identification in OFDM systems
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Exploiting input cyclostationarity for blind channel identification in OFDM systems

机译:利用输入循环平稳性来识别OFDM系统中的盲信道

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摘要

Transmitter-induced cyclostationarity has been explored previously as an alternative to fractional sampling and antenna array methods for blind identification of FIR communication channels. An interesting application of these ideas is in OFDM systems, which induce cyclostationarity due to the cyclic prefix. We develop a novel subspace approach for blind channel identification using cyclic correlations at the OFDM receiver. Even channels with equispaced unit circle zeros are identifiable in the presence of any nonzero length cyclic prefix with adequate block length. Simulations of the proposed channel estimator along with its performance in OFDM systems combined with impulse response shortening and Reed-Solomon coding are presented.
机译:先前已经探索了发射机引起的循环平稳性,以替代分数采样和天线阵列方法来盲目识别FIR通信信道。这些想法的有趣应用是在OFDM系统中,由于循环前缀,该系统会引起循环平稳性。我们开发了一种新的子空间方法,用于在OFDM接收机处使用循环相关性进行盲信道识别。即使存在任何等距单位圆零的通道,在存在任何具有足够块长度的非零长度循环前缀的情况下也可以识别。结合脉冲响应缩短和Reed-Solomon编码,对所提出的信道估计器进行仿真,以及在OFDM系统中的性能。

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