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Determinants of the Pace of Global Innovation in Energy Technologies

机译:能源技术全球创新步伐的决定因素

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摘要

Understanding the factors driving innovation in energy technologies is of critical importance to mitigating climate change and addressing other energy-related global challenges. Low levels of innovation, measured in terms of energy patent filings, were noted in the 1980s and 90s as an issue of concern and were attributed to limited investment in public and private research and development (R&D). Here we build a comprehensive global database of energy patents covering the period 1970–2009, which is unique in its temporal and geographical scope. Analysis of the data reveals a recent, marked departure from historical trends. A sharp increase in rates of patenting has occurred over the last decade, particularly in renewable technologies, despite continued low levels of R&D funding. To solve the puzzle of fast innovation despite modest R&D increases, we develop a model that explains the nonlinear response observed in the empirical data of technological innovation to various types of investment. The model reveals a regular relationship between patents, R&D funding, and growing markets across technologies, and accurately predicts patenting rates at different stages of technological maturity and market development. We show quantitatively how growing markets have formed a vital complement to public R&D in driving innovative activity. These two forms of investment have each leveraged the effect of the other in driving patenting trends over long periods of time.
机译:理解推动能源技术创新的因素对于缓解气候变化和应对其他与能源有关的全球挑战至关重要。在1980年代和90年代,以能源专利申请量衡量的创新水平低是一个令人关注的问题,这归因于对公共和私人研究与开发(R&D)的有限投资。在这里,我们建立了一个涵盖1970-2009年的全面的全球能源专利数据库,这在时间和地理范围上都是独一无二的。对数据的分析揭示了最近与历史趋势的明显偏离。尽管研发资金水平仍然很低,但在过去十年中,专利率急剧上升,特别是在可再生技术领域。为了解决研发投入不大的情况下快速创新的难题,我们开发了一个模型,该模型解释了技术创新经验数据中对各种类型投资的非线性响应。该模型揭示了专利,研发资金和跨技术市场的增长之间的规律性关系,并准确预测了技术成熟度和市场发展的不同阶段的专利申请率。我们定量地展示了不断增长的市场如何在推动创新活动方面对公共研发形成了至关重要的补充。这两种投资形式都在长期内推动了专利趋势的发展,并充分发挥了彼此的作用。

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