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A method for the detection and characterization of technology fronts: Analysis of the dynamics of technological change in 3D printing technology

机译:一种技术前沿的检测和表征方法:3D打印技术中技术变化的动态分析

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摘要

This paper presents a method for the identification of the “technology fronts”—core technological solutions—underlying a certain broad technology, and the characterization of their change dynamics. We propose an approach based on the Latent Dirichlet Allocation (LDA) model combined with patent data analysis and text mining techniques for the identification and dynamic characterization of the main fronts where actual technological solutions are put into practice. 3D printing technology has been selected to put our method into practice for its market emergence and multidisciplinarity. The results show two highly relevant and specialized fronts strongly related with mechanical design that evolve gradually, in our opinion acting as enabling technologies. On the other side, we detected three fronts undergoing significant changes, namely layer-by-layer multimaterial manufacturing, data processing and stereolithograpy techniques. Laser and electron-beam based technologies take shape in the latter years and show signs of becoming enabling technologies in the future. The technology fronts and data revealed by our method have been convincing to experts and coincident with many technology trends already pointed out in technical reports and scientific literature.
机译:本文提出了一种确定“广泛技术”基础的“技术前沿”(核心技术解决方案)的方法,以及表征其变化动态的方法。我们提出了一种基于潜在狄利克雷分配(LDA)模型与专利数据分析和文本挖掘技术相结合的方法,用于识别和动态表征实际技术解决方案付诸实践的主要方面。选择3D打印技术是因为其市场出现和多学科性而将我们的方法付诸实践。结果表明,与机械设计密切相关的两个高度相关和专门的领域正在逐步发展,我们认为它们是使能技术。另一方面,我们检测到三个方面正在发生重大变化,即逐层多层材料制造,数据处理和立体平版印刷技术。在随后的几年中,基于激光和电子束的技术逐渐成形,并显示出将来成为使能技术的迹象。我们的方法所揭示的技术前沿和数据一直令人信服,并且与技术报告和科学文献中已经指出的许多技术趋势相吻合。

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