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A LOW COMPLEXITY SEMI-BLIND CHANNEL IDENTIFICATION AND SOURCE RECOVERY METHOD FOR TRANSMISSION SYSTEMS WITH GUARD INTERVALS

机译:用于保护间隔的传输系统的低复杂性半盲声道识别和源回收方法

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A semi-blind channel identification method is proposed for block transmission systems with guard intervals. Usually, block transmission systems append a sequence of L - 1 zeros (where L is an upper bound on the channel length), called a guard interval, to each block before transmitting the blocks so as to prevent interblock interference. This paper shows that by replacing the L - 1 zeros between each block with specially chosen sequences of L known symbols, a penalty of just one extra symbol per block, it is possible to determine directly the channel coefficients from L consecutively received blocks. For non-time-varying channels, the scheme is equivalent to transmitting a training sequence every L blocks and hence it can be considered as a way of distributing a training sequence over L blocks. The benefit of the proposed method is twofold. Firstly, due to its distributed nature, it outperforms the training sequence method when the channel varies with time. Secondly, it has a lower latency delay than the traditional training sequence based method yet achieves the same or better performance. Note too that the proposed method retains all the advantages of guard intervals.
机译:提出了一种半盲声识别方法,用于具有保护间隔的块传输系统。通常,块传输系统附加L - 1零(其中L是通道长度上的上限),称为保护间隔,在发送块之前,以防止互连干扰。本文示出了通过用特殊选择的L知识符号在每个块之间替换L - 1零,每个块仅额外符号的惩罚,可以直接从L连续接收的块中直接确定信道系数。对于非时变信道,该方案等同于每个L块发送训练序列,因此可以被认为是在L块上分配训练序列的方式。所提出的方法的好处是双重的。首先,由于其分布式性质,当频道随时间变化时,它优于训练序列方法。其次,它具有比传统训练序列的方法更低的延迟延迟,但实现了相同或更好的性能。注意,所提出的方法保留了保护间隔的所有优点。

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