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A nested alignment graph kernel through the dynamic time warping framework

机译:通过动态时间规整框架的嵌套对齐图内核

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摘要

In this paper, we propose a novel nested alignment graph kernel drawing on depth-based complexity traces and the dynamic time warping framework. Specifically, for a pair of graphs, we commence by computing the depth-based complexity traces rooted at the centroid vertices. The resulting kernel for the graphs is defined by measuring the global alignment kernel, which is developed through the dynamic time warping framework, between the complexity traces. We show that the proposed kernel simultaneously considers the local and global graph characteristics in terms of the complexity traces, but also provides richer statistic measures by incorporating the whole spectrum of alignment costs between these traces. Our experiments demonstrate the effectiveness and efficiency of the proposed kernel.
机译:在本文中,我们提出了一种基于深度的复杂度轨迹和动态时间扭曲框架的新型嵌套对齐图内核。具体来说,对于一对图,我们首先计算基于质心顶点的基于深度的复杂度轨迹。图的结果内核是通过测量复杂度轨迹之间通过动态时间规整框架开发的全局对齐内核来定义的。我们表明,提出的内核同时根据复杂度轨迹考虑了局部和全局图形特征,而且通过将这些轨迹之间的对齐成本的整个范围合并在一起,还提供了更丰富的统计量度。我们的实验证明了提出的内核的有效性和效率。

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