Superhuman science: How artificial intelligence may impact innovation

IF 1.3 4区 经济学 Q3 ECONOMICS
Ajay Agrawal, John McHale, Alexander Oettl
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引用次数: 1

Abstract

New product innovation in fields like drug discovery and material science can be characterized as combinatorial search over a vast range of possibilities. Modeling innovation as a costly multi-stage search process, we explore how improvements in artificial intelligence (AI) could affect the productivity of the discovery pipeline in allowing improved prioritization of innovations that flow through that pipeline. We show how AI-aided prediction can increase the expected value of innovation and can increase or decrease the demand for downstream testing, depending on the type of innovation, and examine how AI can reduce costs associated with well-defined bottlenecks in the discovery pipeline.

Abstract Image

超人科学:人工智能如何影响创新
在药物发现和材料科学等领域的新产品创新可以被描述为对广泛可能性的组合搜索。将创新建模为一个昂贵的多阶段搜索过程,我们探讨了人工智能(AI)的改进如何影响发现管道的生产力,从而提高管道中创新的优先级。我们展示了人工智能辅助预测如何提高创新的预期价值,并根据创新的类型增加或减少对下游测试的需求,并研究了人工智能如何降低与发现管道中定义良好的瓶颈相关的成本。
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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
39
期刊介绍: The journal aims to provide an international forum for a new approach to economics. Following the tradition of Joseph A. Schumpeter, it is designed to focus on original research with an evolutionary conception of the economy. The journal will publish articles with a strong emphasis on dynamics, changing structures (including technologies, institutions, beliefs and behaviours) and disequilibrium processes with an evolutionary perspective (innovation, selection, imitation, etc.). It favours interdisciplinary analysis and is devoted to theoretical, methodological and applied work. Research areas include: industrial dynamics; multi-sectoral and cross-country studies of productivity; innovations and new technologies; dynamic competition and structural change in a national and international context; causes and effects of technological, political and social changes; cyclic processes in economic evolution; the role of governments in a dynamic world; modelling complex dynamic economic systems; application of concepts, such as self-organization, bifurcation, and chaos theory to economics; evolutionary games. Officially cited as: J Evol Econ
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