A design for smooth transition of robotic emotional states

M. Han, Chia-How Lin, K. Song
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引用次数: 2

Abstract

A two-dimensional (2-D) emotional model is proposed to represent the emotional state of a sociable robot. We present a novel design of autonomous robotic emotional state transition based on a fuzzy-neuro network. By using fuzzy Kohonen clustering network (FKCN), a smooth transition of the robotic emotional states is obtained to generate continuous emotional behaviors. Moreover, the robotic emotional character can be specified in this design by assigning weights to the FKCN. In this study, four emotional characters and five primitive emotional behaviors (boring, smiling, crying, angry and relaxed) have been designed for a robotic face. The method has been tested by a graphical simulator to verify the robotic responses to the user's emotional intensity (neutral, happiness, anger and sadness). Computer simulations show that the proposed emotional state transition scheme effectively responds to user's emotional intensity in a continuous manner. Practical experiments on a 16-DOF robotic face validate the proposed design.
机器人情感状态平稳过渡的设计
提出了一个二维情感模型来表示社交机器人的情感状态。提出了一种基于模糊神经网络的自主机器人情绪状态转换设计。利用模糊Kohonen聚类网络(FKCN)实现机器人情绪状态的平滑过渡,生成连续的情绪行为。此外,机器人的情感特征可以通过分配FKCN的权重来指定。本研究设计了四种情绪特征和五种原始情绪行为(无聊、微笑、哭泣、愤怒和放松)。该方法已经通过图形模拟器进行了测试,以验证机器人对用户情绪强度(中性、快乐、愤怒和悲伤)的反应。计算机仿真结果表明,所提出的情绪状态转换方案能够有效地连续响应用户的情绪强度。在一个16自由度机器人表面上的实际实验验证了所提出的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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