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A Generalized Quality-Ladder Growth Model with Overlapping Intellectual Property Rights: Quantifying the Effects of Blocking Patents on RD

机译:具有重叠知识产权的广义质量阶梯增长模型:量化阻碍专利对研发的影响

摘要

What are the effects of blocking patents on R&D and consumption? This paper develops an R&D-driven endogenous growth model with overlapping intellectual property rights to quantify the inefficiency in the patent system. The analysis focuses on two policy variables: (a) patent breadth that determines the total profit received by a patent pool; and (b) the profit-sharing rule that determines the distribution of surplus between innovators. To quantify the inefficiency arising from blocking patents that are generated by these two policy variables, the model is calibrated to aggregate data of the US economy. Under parameter values that match key features of the US economy and show equilibrium R&D underinvestment, I find that eliminating blocking patents would lead to a conservatively estimated increase in R&D of 12% and long-run consumption of 4% per year. This paper also quantifies the transition-dynamic effects of patent policy and shows implications that are different from previous studies in important ways.
机译:阻止专利对研发和消费有什么影响?本文开发了一种由研发驱动的内生增长模型,该模型具有重叠的知识产权,以量化专利制度中的低效率。分析着重于两个政策变量:(a)专利宽度,确定专利池获得的总利润; (b)确定创新者之间盈余分配的利润分享规则。为了量化由这两个政策变量产生的封锁专利所引起的效率低下,该模型经过校准以汇总美国经济数据。根据与美国经济的主要特征相匹配的参数值,并显示出研发投入不足的均衡状态,我发现,消除有限制的专利将导致保守估计的研发增加12%和长期消耗每年4%。本文还量化了专利政策的过渡动力效应,并以重要的方式表明了与以往研究不同的含义。

著录项

  • 作者

    Chu Angus C.;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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