Effect of synchronous robot motion on human synchrony and enjoyment perception

IF 0.9 4区 心理学 Q3 COMMUNICATION
Alexis Meneses, Y. Yoshikawa, H. Ishiguro
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引用次数: 3

Abstract

Enhancing synchronization among people when synchronization is lacking is believed to improve their social skills, learning processes, and proficiency in musical rhythmic development. Greater synchronization among people can be induced to improve the rhythmic interaction of a system with multiple dancing robots that dance to a drum beat. A series of experiments were conducted to examine the human–human synchrony between persons that participated in musical sessions with robots. In this study, we evaluated: (a) the effect of the number of robots on a subject’s ability to synchronize with an experimenter; (b) the effect of the type of robot synchrony, namely, whether the robots did or did not represent the subject’s rhythm; (c) the effect of an in-sync and out-of-sync robot on a subject’s behavior. We found that: (a) three robots increased the level of synchronization between the subject and experimenter and their enjoyment level; (b) robots may induce greater synchronization between the subject and experimenter by reproducing the rhythms of not only the experimenter but also of the subject compared to when only the experimenter’s rhythms had been reproduced; (c) the robots in-sync had greater influence on the natural rhythm of the subject.
机器人同步运动对人的同步性和观赏性的影响
当人们缺乏同步性时,加强他们之间的同步性被认为可以提高他们的社交技能、学习过程和对音乐节奏发展的熟练程度。人们之间更大的同步可以被诱导来改善一个系统与多个跳舞机器人的有节奏的相互作用,这些机器人随着鼓点跳舞。研究人员进行了一系列实验,以检验与机器人一起听音乐的人之间的人与人的同步性。在这项研究中,我们评估了:(a)机器人数量对受试者与实验者同步能力的影响;(b)机器人同步类型的影响,即机器人是否代表受试者的节奏;(c)同步和不同步机器人对受试者行为的影响。我们发现:(a)三个机器人增加了受试者和实验者之间的同步水平和他们的享受水平;(b)与只复制实验者的节奏相比,机器人不仅可以复制实验者的节奏,还可以复制受试者的节奏,从而诱导受试者和实验者之间更大程度的同步;(c)同步机器人对受试者自然节奏的影响更大。
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来源期刊
CiteScore
3.30
自引率
6.70%
发文量
8
期刊介绍: This international peer-reviewed journal aims to advance knowledge in the growing and strongly interdisciplinary area of Interaction Studies in biological and artificial systems. Understanding social behaviour and communication in biological and artificial systems requires knowledge of evolutionary, developmental and neurobiological aspects of social behaviour and communication; the embodied nature of interactions; origins and characteristics of social and narrative intelligence; perception, action and communication in the context of dynamic and social environments; social learning.
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