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Making Robots Draw A Vivid Portrait In Two Minutes

机译:使机器人在两分钟内画一个生动的肖像

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Significant progress has been made with artistic robots. However, existing robots fail to produce high-quality portraits in a short time. In this work, we present a drawing robot, which can automatically transfer a facial picture to a vivid portrait, and then draw it on paper within two minutes averagely. At the heart of our system is a novel portrait synthesis algorithm based on deep learning. Innovatively, we employ a self-consistency loss, which makes the algorithm capable of generating continuous and smooth brush-strokes. Besides, we propose a componential sparsity constraint to reduce the number of brush-strokes over insignificant areas. We also implement a local sketch synthesis algorithm, and several pre- and post-processing techniques to deal with the background and details. The portrait produced by our algorithm successfully captures individual characteristics by using a sparse set of continuous brush-strokes. Finally, the portrait is converted to a sequence of trajectories and reproduced by a 3-degree-of-freedom robotic arm. The whole portrait drawing robotic system is named AiSketcher. Extensive experiments show that AiSketcher can produce considerably high-quality sketches for a wide range of pictures, including faces in-the-wild and universal images of arbitrary content. To our best knowledge, AiSketcher is the first portrait drawing robot that uses neural style transfer techniques. AiSketcher has attended a quite number of exhibitions and shown remarkable performance under diverse circumstances.
机译:艺术机器人取得了重大进展。然而,现有机器人在短时间内未能产生高质量的肖像。在这项工作中,我们提出了一个绘图机器人,它可以自动将面部图像转移到生动的肖像,然后在两分钟内在纸上绘制它。在我们的系统的核心是基于深度学习的新颖纵向综合算法。创新性地,我们采用了自我一致性的损失,这使得能够产生连续和平滑的刷子冲程的算法。此外,我们提出了一种成分稀疏限制,以减少微不足道地区的刷子冲程的数量。我们还实现了本地草图综合算法,以及处理背景和细节的几种预处理和后处理技术。我们的算法产生的肖像通过使用稀疏的连续刷笔划成功地捕获了个体特征。最后,肖像被转换为​​一系列轨迹并由3度自由度机器人臂再现。整个肖像绘制机器人系统名为AisketCher。广泛的实验表明,Aisketcher可以为各种图片产生大量高质量的草图,包括野外内容的野外和通用图像。为了我们的最佳知识,Aisketcher是第一个使用神经风格传输技术的肖像画机器人。 Aisketcher参加了相当多的展览,并在不同的情况下表现出显着的性能。

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