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Blind and semi-blind channel identification methods using second order statistics for OFDM systems

机译:OFDM系统中使用二阶统计量的盲和半盲信道识别方法

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Two new blind channel identification methods suited to multicarrier system (OFDM) exploiting the redundancy introduced by the adjunction of a cyclic prefix at the emitter and relying on the evaluation of the received signal autocorrelation matrix are presented. The proposed algorithms are able to identify any channel without any constraint on their zeroes location (including non-minimum phase channels) and are robust to the addition of white noise. Moreover a further enhancement of the estimation accuracy can easily be achieved by taking advantage of already present training symbols in current systems operating in a semi-blind context. Furthermore one of the two identification strategies has a very low arithmetical complexity which makes it particularly attractive in practice. Notice that these methods are not restricted to classical DFT-type modulators and still apply with any perfect reconstruction modulator.
机译:提出了两种适用于多载波系统(OFDM)的新盲信道识别方法,该方法利用了发射器上循环前缀的附加所引入的冗余,并依赖于对接收信号自相关矩阵的评估。所提出的算法能够识别任何通道而对它们的零位没有任何限制(包括非最小相位通道),并且对添加白噪声具有鲁棒性。此外,通过在半盲环境下操作的当前系统中利用已经存在的训练符号,可以容易地实现估计精度的进一步提高。此外,两种识别策略之一具有非常低的算术复杂度,这使其在实践中特别有吸引力。请注意,这些方法不仅限于经典DFT型调制器,而且仍适用于任何完善的重构调制器。

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