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Multiple-antenna differential lattice decoding

机译:多天线差分晶格解码

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From a lattice viewpoint, Clarkson, Sweldens and Zheng significantly reduced the complexity of multiantenna differential decoding. Their approximate decoding algorithm, however, has not unleashed the full potential of lattice decoding. In this paper, we present several improved algorithms, generally referred to as differential lattice decoding (DLD), for multiantenna communication. We first analyze two distinct approximate DLD algorithms, and then develop an algorithm that exactly finds the closest lattice point in the Euclidean space. This exact DLD is subsequently augmented by local search to compensate for the remaining approximation. The small amount of extra complexity of the exact or augmented DLD is rewarded by a clear performance gain. We find that employing basis reduction is very effective to reduce the overall decoding complexity for high lattice dimensions. Moreover, the dimension of the lattice defined in this paper is independent of the number of receive antennas, which results in not only lower complexity, but also better performance for a multiantenna receiver.
机译:从晶格角度来看,Clarkson,Sweldens和Zheng大大降低了多天线差分解码的复杂度。然而,它们的近似解码算法尚未释放出晶格解码的全部潜力。在本文中,我们提出了几种用于多天线通信的改进算法,通常称为差分晶格解码(DLD)。我们首先分析两种截然不同的近似DLD算法,然后开发一种能够精确找到欧几里得空间中最接近的晶格点的算法。随后,通过本地搜索来扩展此精确的DLD,以补偿剩余的近似值。精确的或增强的DLD可以弥补精确或增强DLD的少量额外复杂性。我们发现采用基减少对于降低高晶格尺寸的整体解码复杂度非常有效。此外,本文定义的晶格尺寸与接收天线的数量无关,这不仅降低了复杂度,而且还提高了多天线接收器的性能。

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