基于量子认知模型的概念组合视觉创意

IF 1.4 4区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY
Mozhdeh Ahrabi Tabriz, Tayebe Rafiei Atani, Mehrdad Ashtiani, Mohammad Reza Jahed-Motlagh
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引用次数: 0

摘要

计算创造力建模,包括概念组合,使我们能够培养人工智能代理的更深层次的能力。虽然概念组合已经在许多计算创造力研究中得到了解决,但研究结果显示概念组合的经验数据与所使用方法的结果不相容。此外,尽管最近的神经科学研究表明,检索情景记忆中明确存储的概念关系的关键影响,但它在建模创造性过程中被低估了。本文采用基于量子认知的方法来更有效地考虑上下文和解决逻辑不一致。此外,情景记忆被用作基于所创建的上下文的概念组合建模过程的基础。所提出的过程的结果是一组有意义的概念和表达,作为刺激和相关情节的组合,用于将视觉拼贴画描绘为图像。与现有方法相比,结果质量的显著提高表明,类量子建模可以被视为开发能够创造艺术图像或在创作过程中协助人类的人工智能代理的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visual Creativity through Concept Combination Using Quantum Cognitive Models
Computational creativity modeling, including concept combination, enables us to foster deeper abilities of AI agents. Although concept combination has been addressed in a lot of computational creativity studies, findings show incompatibility amongst empirical data of concept combination and the results of the used methods. In addition, even though recent neuroscientific studies show the crucial impact of retrieving concepts’ relations explicitly stored in episodic memory, it has been underestimated in modeling creative processes. In this paper, a quantum cognition-based approach is used to more effectively consider the context and resolve logical inconsistencies. Also, episodic memory is leveraged as the basis for the concept combination modeling process based on the created context. The result of the proposed process is a set of meaningful concepts and expressions as a combination of stimuli and related episodes which are used to depict a visual collage as an image. The significant improvement in the quality of results in comparison with the existing methods suggests that quantum-like modeling can be considered as the foundation for developing AI agents capable of creating artistic images or assisting a person during a creative process.
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来源期刊
Scientia Iranica
Scientia Iranica 工程技术-工程:综合
CiteScore
2.90
自引率
7.10%
发文量
59
审稿时长
2 months
期刊介绍: The objectives of Scientia Iranica are two-fold. The first is to provide a forum for the presentation of original works by scientists and engineers from around the world. The second is to open an effective channel to enhance the level of communication between scientists and engineers and the exchange of state-of-the-art research and ideas. The scope of the journal is broad and multidisciplinary in technical sciences and engineering. It encompasses theoretical and experimental research. Specific areas include but not limited to chemistry, chemical engineering, civil engineering, control and computer engineering, electrical engineering, material, manufacturing and industrial management, mathematics, mechanical engineering, nuclear engineering, petroleum engineering, physics, nanotechnology.
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