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A novel approach for iterative channel estimation using data symbols of space-time block codes

机译:一种使用空时分组码数据符号进行迭代信道估计的新方法

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A novel approach for channel fading parameters (CFP) estimation using frame-based iterative technique exploiting orthogonal property of the space-time block (STB) code is proposed in this paper. To Implement STB coded system, the receiver needs to estimate these parameters. The inherent orthogonal nature of STB code can be exploited in this case to simplify multiple-input-multiple-output (MIMO) CFP estimation technique. While modified decision-directed (MDD) iterative CFP estimation updates estimated parameters throughout the frame, proposed frame-based (FB) iterative CFP estimation technique updates estimated CFP parameters once in each iteration after decoding the whole frame. Simulation results show significant improvement in terms of error rate using proposed methodology for STB code alone, which will have similar performance improvements for concatenated space-time turbo codes. The proposed scheme uses fewer or no overhead pilot symbols and provide near perfect lower bound performance at the cost of increased receiver complexity and processing time
机译:本文提出了一种利用基于帧的迭代技术的通道衰落参数(CFP)估计的新方法,从而提出了节省时间块(STB)代码的正交性。要实现STB编码系统,接收器需要估计这些参数。在这种情况下,可以利用STB代码的固有正交性以简化多输入 - 多输出(MIMO)CFP估计技术。虽然修改的决策(MDD)迭代CFP估计更新在整个帧中的估计参数,但是基于帧的(FB)迭代CFP估计技术在解码整个帧之后在每次迭代之后更新估计的CFP参数。仿真结果表明,使用所提出的STB代码的错误率的误差率显着改善,这将具有相似的性能改进对连接的时空TINOTBO代码。所提出的方案使用较少或没有开销试验符号,并以提高接收器复杂性和处理时间的成本提供近乎完美的下限性能

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