Securing IoT-Based Cyber-Physical Human Systems against Collaborative Attacks
Title | Securing IoT-Based Cyber-Physical Human Systems against Collaborative Attacks |
Publication Type | Conference Paper |
Year of Publication | 2017 |
Authors | Kumar, S. A. P., Bhargava, B., Macêdo, R., Mani, G. |
Conference Name | 2017 IEEE International Congress on Internet of Things (ICIOT) |
Date Published | June 2017 |
Publisher | IEEE |
ISBN Number | 978-1-5386-2011-3 |
Keywords | Byzantine replication, Collaboration, collaborative attacks, composability, CPHS environment, cyber-physical human systems, Cyber-physical systems, holistic framework, human elements, human involvement, human participation, Indexes, Internet of Things, Intrusion detection, intrusion prevention, intrusion tolerance, IoT based CPHS, IoT-based CPS, privacy, Protocols, pubcrawl, Resiliency, security, security issues, security of data, security threats, Threat Index, threat model, Training |
Abstract | Security issues in the IoT based CPS are exacerbated with human participation in CPHS due to the vulnerabilities in both the technologies and the human involvement. A holistic framework to mitigate security threats in the IoT-based CPHS environment is presented to mitigate these issues. We have developed threat model involving human elements in the CPHS environment. Research questions, directions, and ideas with respect to securing IoT based CPHS against collaborative attacks are presented. |
URL | https://ieeexplore.ieee.org/document/8039049/ |
DOI | 10.1109/IEEE.ICIOT.2017.11 |
Citation Key | kumar_securing_2017 |
- intrusion prevention
- Training
- threat model
- Threat Index
- security threats
- security of data
- security issues
- security
- Resiliency
- pubcrawl
- Protocols
- privacy
- IoT-based CPS
- IoT based CPHS
- intrusion tolerance
- Byzantine replication
- Intrusion Detection
- Internet of Things
- Indexes
- human participation
- human involvement
- human elements
- holistic framework
- cyber-physical systems
- cyber-physical human systems
- CPHS environment
- composability
- collaborative attacks
- collaboration