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Combining tech-mining and semantic-TRIZ for a faster and better technology analysis: a case in energy storage systems

机译:结合技术挖掘和语义TRIZ进行更快更好的技术分析:储能系统中的案例

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摘要

Understanding and anticipating the evolution of technologies is an increasingly complex task attributable to the interdisciplinarity of the technology and the explosion of information about the research and patent activity. By combining the capabilities of tech-mining in identifying and in highlighting trends, weak signals, with those of semantic-TRIZ (Teoriya Resheniya lzobreatatelskikh Zadatch - Theory of Inventive Problem Solving) in identifying the functions, its causes and effects, a better understanding of the trends may be obtained in a shorter time. An interesting trend in the use of graphene in cathode materials, as well as its applications, mainly to enhance the conductivity and the discharge and recharge of the Li-air battery, has been quickly assessed as a result of the combined techniques. Another two cases, the increased presence of nanostructures in cathodes and the emergence of LIFeP04 in the lithium-ion batteries have been also analysed in a short time. The results may predict the good possibilities of the combination of these two evolving techniques.
机译:由于技术的跨学科性以及有关研究和专利活动的信息的激增,理解和预测技术的发展是一项日益复杂的任务。通过结合技术挖掘的能力来识别和突出趋势,弱信号,以及语义TRIZ(Teoriya Resheniya lzobreatatelskikh Zadatch-创造性问题解决理论)的能力,以识别其功能,原因和结果,从而更好地理解趋势可以在更短的时间内获得。石墨烯在阴极材料中的应用及其应用,主要是为了增强锂空气电池的电导率以及放电和再充电,是一个有趣的趋势。在短时间内还分析了另外两种情况,即阴极中纳米结构的增加和锂离子电池中LiFePO4的出现。结果可以预测这两种不断发展的技术相结合的良好可能性。

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