Philip Huff Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Assistant Professor
faculty
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Philip Huff's research investigates cybersecurity, with a focus on vulnerability assessment and threat intelligence. His work includes developing recommender systems for tracking security vulnerabilities and exploring methods for automated assessment of exposure in security operations. Huff has also examined the application of distributed ledger technology for cyber threat intelligence exchange and its use in operational technology environments, particularly within the energy sector. He has published on topics such as privacy in the digital age and linking threat agents to targeted organizations for enhanced risk metrics. His scholarship metrics include an h-index of 6, with 22 total publications and 91 total citations. Huff collaborates with researchers including Spencer Massengale and Jan P. Springer at the University of Arkansas at Little Rock.
Metrics
- h-index: 6
- Publications: 21
- Citations: 92
Selected Publications
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Accessibility Barriers for Blind and Visually Impaired Individuals in Cybersecurity: A Systematic Review (2025)
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Assessing and Prioritizing Ransomware Risk Based on Historical Victim Data (2025)
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CSEC Foundations Guidelines (2025)
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Supplement to CSEC 2017: Foundational Cybersecurity Content and Instructional Guidance for Secondary and Postsecondary Cybersecurity Education (2025)
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CFE: Secure Filtered Words in End-to-End Encrypted Messaging System (2024)
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Linking Threat Agents to Targeted Organizations: A Pipeline for Enhanced Cybersecurity Risk Metrics (2024)
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A Privacy-Preserving Cyber Threat Intelligence Sharing System (2024)
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Emerging Threat Information Sharing and Analysis Center (ET-ISAC) (2024)
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Privacy in the Digital Age: Navigating the Risks and Benefits of Cybersecurity Measures (2024)
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Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix (2023)
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Cyber Arena (2023)
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Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework (2022)
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HELOT–Hunting Evil Life in Operational Technology (2022)
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Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework (2022)
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Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework (2022)
Collaboration Network
Top Collaborators
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- A Privacy-Preserving Cyber Threat Intelligence Sharing System
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessment of the Distributed Ledger Technology for Energy Sector Industrial and Operational Applications Using the MITRE ATT&CK® ICS Matrix
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Linking Threat Agents to Targeted Organizations: A Pipeline for Enhanced Cybersecurity Risk Metrics
- A Privacy-Preserving Cyber Threat Intelligence Sharing System
- Assessing and Prioritizing Ransomware Risk Based on Historical Victim Data
- Assessing and Prioritizing Ransomware Risk Based on Historical Victim Data
- A Recommender System for Tracking Vulnerabilities
- A Distributed Ledger for Non-attributable Cyber Threat Intelligence Exchange
- Towards Automating the Assessment of Software Vulnerability Risk
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK<sup>®</sup> ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
- Assessing Cybersecurity Resilience of Distributed Ledger Technology in Energy Sector Using the MITRE ATT&CK ICS Framework
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