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A network analytic method for measuring patent thickets: A case of FCEV technology

机译:一种用于测量专利灌木丛的网络分析方法:FCEV技术的情况

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摘要

Patent thickets may hinder technology innovation by preventing manufacturers from access to given technology fields. How to prove the existence of patent thickets or how to hack through patent thickets in complex technology areas has attracted a great concern in academia since Shapiro (2000) put forward the theory of patent thickets. This needs a valid and simple method to measure patent thickets. The existing methods are hard to further explore who own complementary patents in patent thickets. The paper proposes a novel method of combining triad census and data-driven social role analysis to measure patent thickets. Taking fuel cell electric vehicle (FCEV) patents at the USPTO and EPO as examples, the paper demonstrates the proposed method is valid and feasible in practice. Both the density of patent thickets and key patent holders in patent thickets can be accurately detected. It can help downstream manufacturers to make a decision whether they should enter given technologies or who could be potential licensors in patent thickets. Researchers or company managers can use this method to measure patent thickets over time from a microscopic perspective.
机译:专利灌木可以通过防止制造商免于获得给定技术领域来阻碍技术创新。如何证明在复杂的技术领域的专利灌木丛中侵蚀专利灌木丛已经吸引了自朝鲜(2000年)提出了专利灌木理论以来的学术界受到了极大的关注。这需要一种有效和简单的方法来测量专利灌木丛。现有的方法很难进一步探索世卫组织在专利灌木丛中拥有互补专利。本文提出了一种结合三元人口普查和数据驱动的社会角色分析来测量专利灌木的新方法。在USPTO和EPO处采用燃料电池电动车(FCEV)专利作为示例,本文演示了所提出的方法在实践中是有效和可行的。可以精确地检测专利灌木的密度和专利灌木中的关键专利持有者。它可以帮助下游制造商决定他们是否应该进入给定技术或者是专利灌木丛中的潜在许可方。研究人员或公司管理人员可以使用这种方法从微观角度来看时间随着时间的推移来测量专利灌木丛。

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