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A robot calligraphy system: From simple to complex writing by human gestures

机译:机器人书法系统:通过手势实现从简单到复杂的书写

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摘要

Robotic writing is a very challenging task and involves complicated kinematic control algorithms and image processing work. This paper, alternatively, proposes a robot calligraphy system that firstly applies human arm gestures to establish a font database of Chinese character elementary strokes and English letters, then uses the created database and human gestures to write Chinese characters and English words. A three-dimensional motion sensing input device is deployed to capture the human arm trajectories, which are used to build the font database and to train a classifier ensemble. 26 types of human gesture are used for writing English letters, and 5 types of gesture are used to generate 5 elementary strokes for writing Chinese characters. By using the font database, the robot calligraphy system acquires a basic writing ability to write simple strokes and letters. Then, the robot can develop to write complex Chinese characters and English words by following human body movements. The classifier ensemble, which is used to identify each gesture, is implemented through using feature selection techniques and the harmony search algorithm, thereby achieving better classification performance. The experimental evaluations are carried out to demonstrate the feasibility and performance of the proposed method. By following the motion trajectories of the human right arm, the end-effector of the robot can successfully write the English words or Chinese characters that correspond to the arm trajectories.
机译:机器人写作是一项非常艰巨的任务,涉及复杂的运动控制算法和图像处理工作。另外,本文提出了一种机器人书法系统,该系统首先应用人的手臂手势来建立汉字基本笔划和英文字母的字体数据库,然后使用创建的数据库和人的手势来写汉字和英文单词。部署了三维运动感测输入设备来捕获人的手臂轨迹,这些轨迹用于构建字体数据库和训练分类器集合。使用26种类型的手势来书写英文字母,并使用5种类型的手势来生成5种基本笔画来书写汉字。通过使用字体数据库,机器人书法系统获得了基本的书写能力,可以书写简单的笔画和字母。然后,该机器人可以通过跟随人体运动来开发以编写复杂的汉字和英文单词。通过使用特征选择技术和和声搜索算法来实现用于识别每个手势的分类器集合,从而获得更好的分类性能。实验评估表明该方法的可行性和性能。通过跟踪右手臂的运动轨迹,机器人的末端执行器可以成功地写出与手臂轨迹相对应的英文单词或汉字。

著录项

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  • 作者单位

    Cognitive Science Department, Fujian Provincial Key Laboratory of Brain-like Computing, School of Informatics, Xiamen University, 361005, China;

    Cognitive Science Department, Fujian Provincial Key Laboratory of Brain-like Computing, School of Informatics, Xiamen University, 361005, China;

    Cognitive Science Department, Fujian Provincial Key Laboratory of Brain-like Computing, School of Informatics, Xiamen University, 361005, China;

    Department of Computer Science, Aberystwyth University, UK;

    Computer Science and Digital Technologies Department, Northumbria University, UK;

    Cognitive Science Department, Fujian Provincial Key Laboratory of Brain-like Computing, School of Informatics, Xiamen University, 361005, China;

    Cognitive Science Department, Fujian Provincial Key Laboratory of Brain-like Computing, School of Informatics, Xiamen University, 361005, China,Department of Computer Science, Aberystwyth University, UK;

    Cognitive Science Department, Fujian Provincial Key Laboratory of Brain-like Computing, School of Informatics, Xiamen University, 361005, China,School of Computer Science and Electronic Engineering, University of Essex, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Robotic writing; Robotic calligraphy; Human-robot interaction; Human gesture recognition; Classifier ensemble;

    机译:机器人写作;机器人书法人机交互手势识别;分类器合奏;
  • 入库时间 2022-08-17 13:22:57

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