储能科学与技术 ›› 2022, Vol. 11 ›› Issue (1): 321-334.doi: 10.19799/j.cnki.2095-4239.2021.0380

• 储能专利 • 上一篇    下一篇

基于高质量专利的储能关键技术国际竞争态势

张子岩(), 张俊艳()   

  1. 天津大学管理与经济学部,天津 300072
  • 收稿日期:2021-07-26 修回日期:2021-08-15 出版日期:2022-01-05 发布日期:2022-01-10
  • 通讯作者: 张俊艳 E-mail:zhangziyan@tju.edu.cn;swallowzh@tju.edu.cn
  • 作者简介:张子岩(1997—),男,硕士研究生,研究方向为知识产权运营管理,E-mail:zhangziyan@tju.edu.cn|张俊艳,博士,副教授,博士生导师,研究方向为知识产权运营管理,E-mail:swallowzh@tju.edu.cn
  • 基金资助:
    天津市科协决策咨询类课题(TJSKXJCZX202007)

International competition of key energy storage technologies based on high-quality patents

Ziyan ZHANG(), Junyan ZHANG()   

  1. College of Management and Economics, Tianjin University, Tianjin 300072, China
  • Received:2021-07-26 Revised:2021-08-15 Online:2022-01-05 Published:2022-01-10
  • Contact: Junyan ZHANG E-mail:zhangziyan@tju.edu.cn;swallowzh@tju.edu.cn

摘要:

储能技术是构建全球能源互联网的关键技术,高质量专利作为技术领域核心竞争力的表征,深入分析和掌握其国际竞争态势是十分必要的。针对颠覆因子识别高质量专利存在的缺陷和不足,结合储能技术的特点,构建了改进的颠覆因子I-D模型并识别出物理储能、电场磁储能、电化学储能和相变储能4项关键领域的高质量专利,进而分析了储能技术的技术活跃度、技术影响力和市场布局。结果显示:高质量专利可以通过改进的颠覆因子I-D模型进行有效识别。国际储能技术整体上升趋势平稳,各关键领域均处于技术生命周期的发展阶段,各个国家的高水平储能技术均由企业主导,我国高校和科研院所的研发活跃度表现突出,国际储能技术的知识流动呈现多元化、均衡化态势。我国凭借较高的研发活跃度成为储能技术领域持有高质量专利最多的国家,拥有高居国际前列的研发参与度、较高的本土专利市场主导权,但同时存在企业梯队建设水平相对不高、多数关键领域技术影响力较弱、对发达国家知识要素过度依赖、国内外市场布局失衡等问题。基于上述发现,提出了我国储能技术高质量发展需要强化产学研协同、强化科技自立自强以及提升国际战略思维的对策建议。

关键词: 储能技术, 高质量专利, 技术活跃度, 技术影响力, 市场布局

Abstract:

Energy storage technologies are crucial to build Global Energy Interconnection, where high-quality patents can characterize the core competitiveness of all parties, and it is necessary to analyze and grasp the international competition situation deeply. Given the deficiency of identifying high-quality patents using disruption index (D-index) and combining the technical features of energy storage technology, the improved disruption index model (I-D model) is designed to identify the high-quality patents in four key technospheres, i.e., physical, electrochemical, electromagnetic, and phase change energy storage technology. This study then analyzes the technical activity, technical impact, and market layout of energy storage technologies. The results show that the I-D model can scientifically and effectively identify high-quality patents. The overall international energy storage technology shows a steady upward trend, and each essential technosphere is at the development stage of the technology life cycle. Enterprises dominate high-level energy storage technologies in each country, and Chinese universities and research institutes show outstanding technical activity. Thus, the international knowledge flow of energy storage technology presents a diversified and balanced situation. China currently holds the largest number of high-quality patents and considerable local market dominance in the energy storage technosphere owing to its high-level technical activity but faces problems, such as low level of enterprise echelon construction, weak technological influence in most key technospheres, excessive dependence on knowledge elements of developed countries, and imbalance of international market layout. Based on these findings, this study suggests a high-quality development of energy storage technology in China, such as strengthening industry-university-research collaboration, striving for scientific and technological self-reliance, and cultivating international strategic thinking.

Key words: energy storage technology, high-quality patents, technical activity, technical impact, market layout

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