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数字技术与供应链韧性:资源-行动-绩效视角

Digital Technologies and Supply Chain Resilience: A Resource-Action-Performance Perspective

Information Systems Frontiers · 2025
被引 12 · 同刊同年前 5%
ABS 3

中文导读

本研究从资源-行动-绩效视角,将数字技术分为资源导向和行动导向两类,实证考察它们如何共同帮助制造企业在新冠疫情等重大中断中维持和提升供应链韧性。

Abstract

Abstract This study empirically examines how various digital technologies individually and collectively contribute to supply chain resilience (SCRes) in coping with major disruptions. While there is no shortage in the IS literature to study the use of digital technologies, current trend is prevailed with either the investigation of single technology or treating all deployed technologies as an undifferentiated whole. Therefore, theoretically, we aim to address the lack of conceptual clarity and insights in the use of multiple digital technologies in tandem. To operationalize this research, we deploy and build on the Resource-Action-Performance (RAP) perspective, and categorize widely used digital technologies into two, namely, resource-oriented and action-oriented technologies. We then empirically investigate how these two categories of digital technologies are orchestrated to help maintain and improve SCRes for manufacturing firms during major disruptions, in this case, Covid-19. The results show a positive effect of resource-oriented technologies on SCRes, which is mediated by action-oriented technologies. Our contributions to the IS literature are threefold. First, our study provides important theoretical insights by analytically separating and categorizing different digital technologies as a means to enrich our understanding in the use of multiple technologies in tandem. Second, we offer empirical evidence to elaborate different functions and values that different digital technologies individually and collectively contributed to firm’s capability in SCRes and its ability to cope with major disruptions. Third, our study provides practical insights into utilizing digital tools to maintain business continuity in uncertain environments.

供应链管理数字技术组织韧性信息系统