基于人类认知过程的机器人接受顺序模型

Waka Saeki, Yoshiyuki Ueda
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摘要

机器人具有巨大的潜力,最近不仅在工厂的简单操作中,而且在需要客户服务交流的工作场所中也得到了应用。然而,交流机器人并非总能被接受。本研究根据人类的认知过程流,提出了机器人接受的三阶段(初次接触、互动和决策)模型,以设计首选机器人,并阐明了影响机器人接受决策的机器人要素和过程。与以往的机器人接受模型不同的是,本模型侧重于对人们如何决定接受的顺序进行阐述,并考虑了每个阶段所建立的印象之间的互动(或承上启下)效应。根据该模型,本研究进行了一项基于场景的实验,重点研究了在成功和略微失败的情况下,首次接触(机器人的外观)和与机器人互动过程中形成的印象(机器人对话和行为的礼貌性)对机器人接受度的影响。机器人的外观越漂亮,行为越礼貌,接受率就越高。重要的是,这两个因素之间没有相互作用。研究结果表明,初次接触和互动的印象是经过加法处理的,这表明我们应该积累研究结果,改进机器人的外观并使其交流行为更像人类的礼貌行为,这样设计的机器人更容易被接受。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sequential model based on human cognitive processing to robot acceptance
Robots have tremendous potential, and have recently been introduced not only for simple operations in factories, but also in workplaces where customer service communication is required. However, communication robots have not always been accepted. This study proposes a three-stage (first contact, interaction, and decision) model for robot acceptance based on the human cognitive process flow to design preferred robots and clarifies the elements of the robot and the processes that affect robot acceptance decision-making. Unlike previous robot acceptance models, the current model focuses on a sequential account of how people decide to accept, considering the interaction (or carry-over) effect between impressions established at each stage. According to the model, this study conducted a scenario-based experiment focusing on the impression of the first contact (a robot’s appearance) and that formed during the interaction with robot (politeness of its conversation and behavior) on robot acceptance in both successful and slightly failed situations. The better the appearance of the robot and the more polite its behavior, the greater the acceptance rate. Importantly, there was no interaction between these two factors. The results indicating that the impressions of the first contact and interaction are additively processed suggest that we should accumulate findings that improving the appearance of the robot and making its communication behavior more human-like in politeness will lead to a more acceptable robot design.
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