首页> 外文会议>2011 IEEE/SICE International Symposium on System Integration >Changes in coordinative structure through human-environmental interaction and its role in estimation of dynamics
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Changes in coordinative structure through human-environmental interaction and its role in estimation of dynamics

机译:通过人与环境的相互作用而协调结构的变化及其在动力学估算中的作用

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Humans are able to acquire information on dynamics that cannot be directly obtained through observation of kinematics. Since the coordinative structure of the human behavior is self-organizing in interactions with the environment, a change in the environment induces a change in the coordination structure. It is posited that humans identify dynamic interactions between the body of the actor and the external environment through the interpolation of coordinated structures for observed behaviors. Coordinative structures consist of invariant part and covariant part. Invariant part is a set of motion change points which are found even if the environment or dynamic interaction has changed. Covariant part is a set of motion change points caused by the environmental changes. In this paper, we examine more closely the changes in coordinative structure induced by changes in dynamic interactions with the environment, and describe a method to extract invariant and covariant part of coordinative structures. Moreover The importance of the change in the coordinated structure in recognition of the dynamic interaction by observers is also described. The results of dynamics recognition experiments revealed that information necessary for the estimation of relative weight is contained in the covariant part of the coordinated structures but not in their invariant regions, and furthermore that timing is also an essential for estimation.
机译:人类能够获取动力学信息,而这些信息是无法通过运动学观察直接获得的。由于人类行为的协调结构在与环境的交互中是自组织的,因此环境的变化会引起协调结构的变化。假设人类通过对观察到的行为的协调结构进行插值来识别演员的身体与外部环境之间的动态相互作用。协调结构由不变部分和协变部分组成。不变部分是一组运动变化点,即使环境或动态交互已更改,也可以找到它们。协变部分是由环境变化引起的一组运动变化点。在本文中,我们将更仔细地研究与环境动态交互作用所引起的协调结构的变化,并描述一种提取协调结构的不变和协变部分的方法。而且,还描述了在观察者认识到动态交互作用时协调结构变化的重要性。动力学识别实验的结果表明,估计相对权重所需的信息包含在协调结构的协变部分中,而不包含在它们的不变区域中,此外,时序对于估计也很重要。

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