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Poster Abstract: Securing Edge-Based Real-Time IoT Systems

Published: 26 April 2024 Publication History

Abstract

The advent of the Internet of Things (IoT) has led to an increased demand for security and real-time guarantees in distributed embedded systems comprising the IoT. Securing edge-based systems with limited resources can be especially problematic due to challenges in adapting traditional network security protocols. In this work, we introduce two methods to provide security guarantees in resource-constrained devices-based ioT systems. As a case study, we propose an integration of Secure Swarm Toolkit (SST), an open-source framework for IoT security, with Lingua Franca (LF), a software platform for concurrent and time-sensitive applications. We report preliminary results on our work-in-progress implementation and experiments, followed by concrete future research plans.

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Soroush Bateni et al. 2023. Risk and Mitigation of Nondeterminism in Distributed Cyber-Physical Systems. In MEMOCODE'23. ACM.
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Kamalanathan Kandasamy et al. 2020. IoT cyber risk: a holistic analysis of cyber risk assessment frameworks, risk vectors, and risk ranking process. EURASIP J. on Info. Security 8 (2020).
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Dongha Kim, Yeongbin Jo, Taekyung Kim, and Hokeun Kim. 2023. SST v1.0.0 with C API: Pluggable security solution for the Internet of Things. SoftwareX 22 (2023).
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Hokeun Kim, Eunsuk Kang, David Broman, and Edward A Lee. 2017. An architectural mechanism for resilient IoT services. In SafeThings 2017. 8--13.
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Hokeun Kim, Eunsuk Kang, Edward A. Lee, and David Broman. 2017. A Toolkit for Construction of Authorization Service Infrastructure for the Internet of Things. In IoTDI'17. ACM, 147--158.
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Hokeun Kim, Armin Wasicek, Benjamin Mehne, and Edward A Lee. 2016. A secure network architecture for the internet of things based on local authorization entities. In FiCloud 2016. IEEE, 114--122.
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Jinwoo Kim, Eduard Marin, Mauro Conti, and Seungwon Shin. 2022. EqualNet: a secure and practical defense for long-term network topology obfuscation. USENIX NDSS 2022 (2022).
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Marten Lohstroh et al. 2020. Reactors: A deterministic model for composable reactive systems. In CyPhy 2019, WESE 2019. Springer, 59--85.
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Published In

cover image ACM Conferences
SenSys '23: Proceedings of the 21st ACM Conference on Embedded Networked Sensor Systems
November 2023
574 pages
ISBN:9798400704147
DOI:10.1145/3625687
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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 26 April 2024

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Author Tags

  1. security
  2. distributed embedded systems
  3. real-time systems
  4. IoT

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Overall Acceptance Rate 174 of 867 submissions, 20%

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SenSys '24

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