Cyber Value At Risk Model for IoT Ecosystems

Fuente: arXiv
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Autori principali: Kucukkaya, Goksel, Ozer, Murat, Ugurlu, Emrah
Natura: Preprint
Pubblicazione: 2025
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author Kucukkaya, Goksel
Ozer, Murat
Ugurlu, Emrah
author_facet Kucukkaya, Goksel
Ozer, Murat
Ugurlu, Emrah
contents The Internet of Things (IoT) presents unique cybersecurity challenges due to its interconnected nature and diverse application domains. This paper explores the application of Cyber Value-at-Risk (Cy-VaR) models to assess and mitigate cybersecurity risks in IoT environments. Cy-VaR, rooted in Value at Risk principles, provides a framework to quantify the potential financial impacts of cybersecurity incidents. Initially developed to evaluate overall risk exposure across scenarios, our approach extends Cy-VaR to consider specific IoT layers: perception, network, and application. Each layer encompasses distinct functionalities and vulnerabilities, from sensor data acquisition (perception layer) to secure data transmission (network layer) and application-specific services (application layer). By calculating Cy- VaR for each layer and scenario, organizations can prioritize security investments effectively. This paper discusses methodologies and models, including scenario-based Cy-VaR and layer-specific risk assessments, emphasizing their application in enhancing IoT cybersecurity resilience.
format Preprint
id arxiv_https___arxiv_org_abs_2504_17054
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Cyber Value At Risk Model for IoT Ecosystems
Kucukkaya, Goksel
Ozer, Murat
Ugurlu, Emrah
Computers and Society
The Internet of Things (IoT) presents unique cybersecurity challenges due to its interconnected nature and diverse application domains. This paper explores the application of Cyber Value-at-Risk (Cy-VaR) models to assess and mitigate cybersecurity risks in IoT environments. Cy-VaR, rooted in Value at Risk principles, provides a framework to quantify the potential financial impacts of cybersecurity incidents. Initially developed to evaluate overall risk exposure across scenarios, our approach extends Cy-VaR to consider specific IoT layers: perception, network, and application. Each layer encompasses distinct functionalities and vulnerabilities, from sensor data acquisition (perception layer) to secure data transmission (network layer) and application-specific services (application layer). By calculating Cy- VaR for each layer and scenario, organizations can prioritize security investments effectively. This paper discusses methodologies and models, including scenario-based Cy-VaR and layer-specific risk assessments, emphasizing their application in enhancing IoT cybersecurity resilience.
title Cyber Value At Risk Model for IoT Ecosystems
topic Computers and Society
url https://arxiv.org/abs/2504.17054