Towards Autonomous Supply Chains: Definition, Characteristics,
Conceptual Framework, and Autonomy Levels
- URL: http://arxiv.org/abs/2401.14183v1
- Date: Fri, 13 Oct 2023 22:09:52 GMT
- Title: Towards Autonomous Supply Chains: Definition, Characteristics,
Conceptual Framework, and Autonomy Levels
- Authors: Liming Xu and Stephen Mak and Yaniv Proselkov and Alexandra Brintrup
- Abstract summary: Recent global disruptions, such as the pandemic and geopolitical conflicts, have profoundly exposed vulnerabilities in traditional supply chains.
Recent global disruptions, such as the pandemic and geopolitical conflicts, have profoundly exposed vulnerabilities in traditional supply chains.
Autonomous supply chains (ASCs) have emerged as a potential solution, offering increased visibility, flexibility, and resilience in turbulent trade environments.
- Score: 50.43384662878146
- License: http://creativecommons.org/licenses/by-nc-nd/4.0/
- Abstract: Recent global disruptions, such as the pandemic and geopolitical conflicts,
have profoundly exposed vulnerabilities in traditional supply chains, requiring
exploration of more resilient alternatives. Autonomous supply chains (ASCs)
have emerged as a potential solution, offering increased visibility,
flexibility, and resilience in turbulent trade environments. Despite
discussions in industry and academia over several years, ASCs lack
well-established theoretical foundations. This paper addresses this research
gap by presenting a formal definition of ASC along with its defining
characteristics and auxiliary concepts. We propose a layered conceptual
framework called the MIISI model. An illustrative case study focusing on the
meat supply chain demonstrates an initial ASC implementation based on this
conceptual model. Additionally, we introduce a seven-level supply chain
autonomy reference model, delineating a trajectory towards achieving a full
supply chain autonomy. Recognising that this work represents an initial
endeavour, we emphasise the need for continued exploration in this emerging
domain. We anticipate that this work will stimulate further research, both
theoretical and technical, and contribute to the continual evolution of ASCs.
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