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Fast tensorial JADE

机译:快速姿态玉

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摘要

We propose a novel method for tensorial-independent component analysis. Our approach is based on TJADE and k-JADE, two recently proposed generalizations of the classical JADE algorithm. Our novel method achieves the consistency and the limiting distribution of TJADE under mild assumptions and at the same time offers notable improvement in computational speed. Detailed mathematical proofs of the statistical properties of our method are given and, as a special case, a conjecture on the properties of k-JADE is resolved. Simulations and timing comparisons demonstrate remarkable gain in speed. Moreover, the desired efficiency is obtained approximately for finite samples. The method is applied successfully to large-scale video data, for which neither TJADE nor k-JADE is feasible. Finally, an experimental procedure is proposed to select the values of a set of tuning parameters. Supplementary material including the R-code for running the examples and the proofs of the theoretical results is available online.
机译:我们提出了一种独立的张力的分析方法。我们的方法是基于TJADE和K-JAY,最近提出的古典玉石算法的两个概括。我们的新方法达到了温和假设下TJADE的一致性和限制分布,同时提供了显着的计算速度的提高。给出了我们方法的统计特性的详细数学证据,作为特殊情况,解决了K玉的性质的猜想。仿真和时序比较呈现出速度显着增益。此外,大约获得所需的效率以获得有限的样品。该方法成功应用于大规模视频数据,既不是TJADE也没有K-玉是可行的。最后,提出了一种实验过程来选择一组调谐参数的值。补充材料包括用于运行示例的R代码和理论结果的证明。

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