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Iterative demodulation/decoding methods based on Gaussian approximations for lattice based space-time coded systems

机译:基于高斯近似的基于格的时空编码系统的迭代解调/解码方法

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In this letter, we study iterative demodulation and decoding methods for lattice based space-time coded systems concatenated with convolutional codes. We first apply the optimal MAP demodulation and the suboptimal linear MMSE methods to lattice based space-time demodulation and decoding. We then propose two other methods based on the idea of soft interference cancellation and in one method vector Gaussian approximation is used and in the other method scalar Gaussian approximation is used. We also present the EXIT chart analyses for the performance analyses for these iterative methods. Both theoretical and simulation results show that the performance of the vector Gaussian approximation method is the same as that of the linear MMSE method but in some cases the vector Gaussian approximation method has lower complexity. The complexity of the scalar Gaussian approximation method is the lowest among these different methods and grows linearly with the transmission rate while it still has an acceptable performance. Full diversity and full rate lattice based space-time coding is compared with the BLAST scheme and simulations show that the former has a better performance than the later even with the proposed suboptimal iterative demodulation and decoding methods.
机译:在这封信中,我们研究了与卷积码串联的基于格的空时编码系统的迭代解调和解码方法。我们首先将最佳MAP解调和次优线性MMSE方法应用于基于格的时空解调和解码。然后,基于软干扰消除的思想,我们提出了另外两种方法,一种方法是使用矢量高斯近似,而另一种方法是使用标量高斯近似。我们还介绍了EXIT图表分析,以进行这些迭代方法的性能分析。理论和仿真结果均表明,矢量高斯近似方法的性能与线性MMSE方法相同,但在某些情况下,矢量高斯近似方法的复杂度较低。标量高斯近似方法的复杂度在这些不同方法中最低,并且随着传输速率线性增长,同时仍具有可接受的性能。将基于全分集和全速率格的空时编码与BLAST方案进行了比较,仿真结果表明,即使采用了次优迭代解调和解码方法,前者也比后者具有更好的性能。

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