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Detecting dance motion structure using body components and turning motions

机译:使用身体部位和转动动作检测舞蹈动作结构

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This paper presents a novel method for robust dance motion structure detection. In the japanese folk dance domain, teachers created illustrations of dance poses. These poses characterize the most important movements of a dance. So far there is no simple and reliable extraction method which can extract all poses as shown in these drawings. We use these poses for the Task Model (TM) in the context of Learning from Observation (LFO). LFO which is a well known technique for successful human to robot motion mapping, consists of tasks (what to do) and skills (how to do). We propose a novel approach, to extract special motions from a dance, called turning motions useful for skill mapping in the LFO paradigm. Furthermore, we use a modified version of this approach, to detect all poses as shown in the drawings, called turning poses. To achieve this we observe both forearms at the same time and analyze their movement in different 2-D coordinate planes. We evaluate the parameters with and without a weighting function where we minimize acceleration, velocity and power. We successfully demonstrate this novel method using two very different japanese folk dances and discuss further implications of this work in respect to the LFO paradigm and dances of other domains.
机译:本文提出了一种新的鲁棒舞蹈动作结构检测方法。在日本的民间舞蹈领域,老师们创造了舞蹈姿势的插图。这些姿势代表了舞蹈中最重要的动作。到目前为止,还没有一种简单可靠的提取方法可以提取这些图中显示的所有姿势。我们在从观察中学习(LFO)的上下文中将这些姿势用于任务模型(TM)。 LFO是成功完成人到机器人运动映射的一项众所周知的技术,它由任务(要做的事情)和技能(如何做)组成。我们提出了一种新颖的方法,从舞蹈中提取特殊动作,称为转身动作,对LFO范例中的技能映射很有用。此外,我们使用了此方法的改进版本,以检测图中所示的所有姿势,称为转弯姿势。为此,我们同时观察两个前臂并分析它们在不同二维坐标平面中的运动。我们评估带有或不带有加权函数的参数,从而最大程度地减小加速度,速度和功率。我们使用两种截然不同的日本民间舞蹈成功演示了这种新颖的方法,并讨论了该作品在LFO范例和其他领域的舞蹈方面的进一步含义。

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