Quantum Internet Use Case Analysis for the Automotive Industry

Fuente: arXiv
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Main Authors: van der Enden, K. L., Kirschner, R., Krumtünger, M., Wilms, A.
Format: Preprint
Published: 2025
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_version_ 1866913673108258816
author van der Enden, K. L.
Kirschner, R.
Krumtünger, M.
Wilms, A.
author_facet van der Enden, K. L.
Kirschner, R.
Krumtünger, M.
Wilms, A.
contents A future quantum internet brings promising applications related to security, privacy and enabling distributed quantum computing. Integration of these concepts into the future trends of the automotive sector is of considerable interest, as it enables both the development of practical quantum internet use cases and the adoption of innovative technologies in the automotive sector. In this work we analyze cross-platform megatrends in both the quantum internet and the automotive industry, identifying mutually beneficial regions of interest. In the short-term ($<10$ years) hardware miniaturization and automation of quantum internet technology provides a synergy interface between the two domains. For the long-term ($\geq10$ years) we develop a comprehensive list of use cases for the quantum internet within the automotive sector. We find considerable relevancy of augmenting autonomous driving, vehicle ad hoc networks and sensor fusion with blind quantum computing, anonymous transmission and quantum cryptographic tools. These results can be used to target future research, engineering and venture developments for both domains. Furthermore, our approach can be applied to other industries, enabling a structured methodology for identifying and developing feasible use cases for the quantum internet in diverse domains.
format Preprint
id arxiv_https___arxiv_org_abs_2501_19070
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Internet Use Case Analysis for the Automotive Industry
van der Enden, K. L.
Kirschner, R.
Krumtünger, M.
Wilms, A.
Quantum Physics
A future quantum internet brings promising applications related to security, privacy and enabling distributed quantum computing. Integration of these concepts into the future trends of the automotive sector is of considerable interest, as it enables both the development of practical quantum internet use cases and the adoption of innovative technologies in the automotive sector. In this work we analyze cross-platform megatrends in both the quantum internet and the automotive industry, identifying mutually beneficial regions of interest. In the short-term ($<10$ years) hardware miniaturization and automation of quantum internet technology provides a synergy interface between the two domains. For the long-term ($\geq10$ years) we develop a comprehensive list of use cases for the quantum internet within the automotive sector. We find considerable relevancy of augmenting autonomous driving, vehicle ad hoc networks and sensor fusion with blind quantum computing, anonymous transmission and quantum cryptographic tools. These results can be used to target future research, engineering and venture developments for both domains. Furthermore, our approach can be applied to other industries, enabling a structured methodology for identifying and developing feasible use cases for the quantum internet in diverse domains.
title Quantum Internet Use Case Analysis for the Automotive Industry
topic Quantum Physics
url https://arxiv.org/abs/2501.19070