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Expressive Motion Synthesis for Robot Actors in Robot Theatre

机译:机器人剧院机器人演员的表达运动综合

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摘要

Lately, personal and entertainment robotics are becoming more and more common. In this thesis, the application of entertainment robots in the context of a Robot Theatre is studied. Specifically, the thesis focuses on the synthesis of expressive movements or animations for the robot performers (Robot Actors). The novel paradigm emerged from computer animation is to represent the motion data as a set of signals. Thus, preprogrammed motion data can be quickly modified using common signal processing techniques such as multiresolution filtering and spectral analysis. However, manual adjustments of the filtering and spectral methods parameters, and good artistic skills are still required to obtain the desired expressions in the resulting animation. Music contains timing, timbre and rhythm information which humans can translate into affect, and express the affect through movement dynamics, such as in dancing. Music data is then assumed to contain affective information which can be expressed in the movements of a robot. In this thesis, music data is used as input signal to generate motion data (Dance) and to modify a sequence of pre-programmed motion data (Scenario) for a custom-made Lynxmotion robot and a KHR-1 robot, respectively. The music data in MIDI format is parsed for timing and melodic information, which are then mapped to joint angle values. Surveys were done to validate the usefulness and contribution of music signals to add expressiveness to the movements of a robot for the Robot Theatre application.
机译:近来,个人和娱乐机器人技术变得越来越普遍。本文研究娱乐机器人在机器人剧院环境中的应用。具体而言,本文着重于为机器人表演者(机器人演员)表达运动或动画。从计算机动画中出现的新颖范例是将运动数据表示为一组信号。因此,可以使用常见的信号处理技术(例如多分辨率滤波和频谱分析)快速修改预编程的运动数据。但是,仍然需要手动调整滤波和频谱方法参数以及良好的艺术技巧,才能在生成的动画中获得所需的表达。音乐包含时间,音色和节奏信息,人类可以将其转化为情感,并通过运动动力(如跳舞)表达情感。然后假定音乐数据包含可以在机器人的运动中表达的情感信息。在本文中,音乐数据被用作输入信号,以生成运动数据(Dance)并分别修改定制的Lynxmotion机器人和KHR-1机器人的一系列预编程运动数据(场景)。解析MIDI格式的音乐数据以获得时间和旋律信息,然后将其映射到关节角度值。进行了调查以验证音乐信号的有用性和贡献,从而为机器人剧院应用程序增加了机器人动作的表现力。

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    Sunardi Mathias I.;

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  • 年度 2010
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