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Quaternion Dynamic Time Warping

机译:四元数动态时间规整

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摘要

Dynamic time warping (DTW) is used for the comparison and processing of nonlinear signals and constitutes a widely researched field of study. The method has been initially designed for, and applied to, signals representing audio data. Afterwords it has been successfully modified and applied to many other fields of study. In this paper, we present the results of researches on the generalized DTW method designed for use with rotational sets of data parameterized by quaternions. The need to compare and process quaternion time series has been gaining in importance recently. Three-dimensional motion data processing is one of the most important applications here. Specifically, it is applied in the context of motion capture, and in many cases all rotational signals are described in this way. We propose a construction of generalized method called quaternion dynamic time warping (QDTW), which makes use of specific properties of quaternion space. It allows for the creation of a family of algorithms that deal with the higher order features of the rotational trajectory. This paper focuses on the analysis of the properties of this new approach. Numerical results show that the proposed method allows for efficient element assignment. Moreover, when used as the measure of similarity for a clustering task, the method helps to obtain good clustering performance both for synthetic and real datasets.
机译:动态时间规整(DTW)用于非线性信号的比较和处理,构成了广泛的研究领域。该方法最初被设计用于并且应用于表示音频数据的信号。后记已被成功修改并应用于许多其他研究领域。在本文中,我们介绍了设计用于四元数参数化的旋转数据集的广义DTW方法的研究结果。最近,比较和处理四元数时间序列的需求变得越来越重要。三维运动数据处理是此处最重要的应用之一。具体地说,它是在运动捕捉的情况下应用的,并且在许多情况下,所有旋转信号都是以此方式描述的。我们提出了一种称为四元数动态时间规整(QDTW)的通用方法,该方法利用了四元数空间的特定属性。它允许创建处理旋转轨迹高阶特征的一系列算法。本文着重分析这种新方法的属性。数值结果表明,该方法可以实现高效的元素分配。此外,当用作聚类任务的相似性度量时,该方法有助于为合成数据集和真实数据集获得良好的聚类性能。

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