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Overcoming inefficiencies in patent licensing: A method to assess patent essentiality for technical standards

质量(理念) 业务 点(几何) 技术标准 产业组织 营销 互联网 比例(比率) 风险分析(工程) 计算机科学 公共经济学 经济 操作系统 认识论 物理 万维网 哲学 量子力学 数学 几何学
作者
Rudi Bekkers,Elena M. Tur,Joachim Henkel,Tommy van der Vorst,Menno Driesse,Jorge L. Contreras
出处
期刊:Research Policy [Elsevier BV]
卷期号:51 (10): 104590-104590 被引量:19
标识
DOI:10.1016/j.respol.2022.104590
摘要

The market for patent licenses, despite its paramount importance for technological innovation, has various inefficiencies. A particular problem with widely used technical standards such as LTE and Wi-Fi is the lack of information regarding which patents are “essential” to implement the standard. This information is crucial because it simplifies determining infringement and implies specific “FRAND” licensing rules. While many standards-developing organizations stipulate that such patents are explicitly declared, little is known about which are actually essential. The absence of publicly available information on essentiality incurs significant social costs due to the resulting friction in the licensing market. With the growing use and importance of standards to mobility and energy markets, and to the Internet of Things, these costs are likely to rise. Responding to calls from industry, courts and policymakers, commercial and academic studies have attempted to assess essentiality, but they all have limitations. This paper reports on the technical feasibility of a system of expert assessments for patent essentiality. Based on a factorial design, we conducted a field experiment with 20 patent examiners performing over 100 assessments. Comparing the outcomes to a high-quality reference point shows that sufficiently accurate expert assessments, at a price level that allows large scale testing, are technically feasible, and we identify routes to further improvement. • Our study addresses inefficiencies in the market for SEP patent licenses. • We study the feasibility of a system for transparent data on essentiality. • We conduct a field experiment with factorial design. • In our experiment, 20 European patent examiners perform over 100 assessments. • We conclude that sufficiently accurate expert assessments are technically feasible.
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