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人为交互阻碍技术进步:一项实证研究。

Artifact interactions retard technological improvement: An empirical study.

作者信息

Basnet Subarna, Magee Christopher L

机构信息

SUTD-MIT International Design Center, Singapore University Technology and Design, Singapore, Singapore.

SUTD-MIT International Design Center, Massachusetts Institute of Technology, Cambridge, Massachusetts, United States of America.

出版信息

PLoS One. 2017 Aug 4;12(8):e0179596. doi: 10.1371/journal.pone.0179596. eCollection 2017.

Abstract

Empirical research has shown performance improvement of many different technological domains occurs exponentially but with widely varying improvement rates. What causes some technologies to improve faster than others do? Previous quantitative modeling research has identified artifact interactions, where a design change in one component influences others, as an important determinant of improvement rates. The models predict that improvement rate for a domain is proportional to the inverse of the domain's interaction parameter. However, no empirical research has previously studied and tested the dependence of improvement rates on artifact interactions. A challenge to testing the dependence is that any method for measuring interactions has to be applicable to a wide variety of technologies. Here we propose a novel patent-based method that is both technology domain-agnostic and less costly than alternative methods. We use textual content from patent sets in 27 domains to find the influence of interactions on improvement rates. Qualitative analysis identified six specific keywords that signal artifact interactions. Patent sets from each domain were then examined to determine the total count of these 6 keywords in each domain, giving an estimate of artifact interactions in each domain. It is found that improvement rates are positively correlated with the inverse of the total count of keywords with Pearson correlation coefficient of +0.56 with a p-value of 0.002. The results agree with model predictions, and provide, for the first time, empirical evidence that artifact interactions have a retarding effect on improvement rates of technological domains.

摘要

实证研究表明,许多不同技术领域的性能提升呈指数级增长,但提升速度差异很大。是什么导致一些技术比其他技术改进得更快呢?先前的定量建模研究已确定工件交互作用(即一个组件的设计变更会影响其他组件)是提升速度的一个重要决定因素。这些模型预测,一个领域的提升速度与该领域交互参数的倒数成正比。然而,此前尚无实证研究对提升速度对工件交互作用的依赖性进行研究和测试。测试这种依赖性的一个挑战在于,任何测量交互作用的方法都必须适用于各种各样的技术。在此,我们提出一种基于专利的新颖方法,该方法既与技术领域无关,成本又低于其他替代方法。我们使用27个领域的专利集中的文本内容来探究交互作用对提升速度的影响。定性分析确定了六个表明工件交互作用的特定关键词。然后检查每个领域的专利集,以确定每个领域中这六个关键词的总数,从而估算每个领域中的工件交互作用。研究发现,提升速度与关键词总数的倒数呈正相关,皮尔逊相关系数为+0.56,p值为0.002。结果与模型预测相符,并首次提供了实证证据,证明工件交互作用对技术领域的提升速度具有阻碍作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03a8/5544181/7ad9b90e1cd0/pone.0179596.g001.jpg

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