Worst- and average-case complexity of LLL lattice reduction in MIMO wireless systems

J. Jaldén, D. Seethaler, G. Matz
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引用次数: 106

Abstract

Lattice reduction by means of the LLL algorithm has been previously suggested as a powerful preprocessing tool that allows to improve the performance of suboptimal detectors and to reduce the complexity of optimal MIMO detectors. The complexity of the LLL algorithm is often cited as polynomial in the dimension of the lattice. In this paper we argue that this statement is not correct when made in the MIMO context. Specifically, we demonstrate that in typical communication scenarios the worst-case complexity of the LLL algorithm is not even finite. For i.i.d. Rayleigh fading channels, we further prove that the average LLL complexity is polynomial and that the probability for an atypically large number of LLL iterations decays exponentially.
MIMO无线系统中最小晶格约简的最坏情况和平均情况复杂度
通过LLL算法的晶格约简已经被认为是一种强大的预处理工具,可以提高次优检测器的性能并降低最优MIMO检测器的复杂性。LLL算法的复杂度通常被引用为晶格维数的多项式。在本文中,我们认为这种说法是不正确的,当在MIMO上下文中。具体来说,我们证明了在典型的通信场景中,LLL算法的最坏情况复杂度甚至不是有限的。对于i.i.d Rayleigh衰落信道,我们进一步证明了平均LLL复杂度是多项式的,并且非典型大量LLL迭代的概率呈指数衰减。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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