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Cyber-Physical Systems Virtual Organization
Read-only archive of site from September 29, 2023.
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Projects
CPS: Synergy: Collaborative Research: Cyber-Physical Approaches to Advanced Manufacturing Security
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Submitted by Jaime Camelio on Mon, 12/21/2015 - 4:21pm
Project Details
Lead PI:
Jaime Camelio
Co-PI(s):
Christopher Williams
Lee Wells
Performance Period:
06/15/15
-
05/31/19
Institution(s):
Virginia Polytechnic Institute and State University
Sponsor(s):
National Science Foundation
Award Number:
1446804
1252 Reads. Placed 261 out of 804 NSF CPS Projects based on total reads on all related artifacts.
Abstract:
The evolution of manufacturing systems from loose collections of cyber and physical components into true cyber-physical systems has expanded the opportunities for cyber-attacks against manufacturing. To ensure the continued production of high-quality parts in this new environment requires the development of novel security tools that transcend both the cyber and physical worlds. Potential cyber-attacks can cause undetectable changes in a manufacturing system that can adversely affect the product's design intent, performance, quality, or perceived quality. The result of this could be financially devastating by delaying a product's launch, ruining equipment, increasing warranty costs, or losing customer trust. More importantly, these attacks pose a risk to human safety, as operators and consumers could be using faulty equipment/products. New methods for detecting and diagnosing cyber-physical attacks will be studied and evaluated through our established industrial partners. The expected results of this project will contribute significantly in further securing our nation's manufacturing infrastructure. This project establishes a new vision for manufacturing cyber-security based upon modeling and understanding the correlation between cyber events that occur in a product/process development-cycle and the physical data generated during manufacturing. Specifically, the proposed research will take advantage of this correlation to characterize the relationships between cyber-attacks, process data, product quality observations, and side-channel impacts for the purpose of attack detection and diagnosis. These process characterizations will be coupled with new manufacturing specific cyber-attack taxonomies to provide a comprehensive understanding of attack surfaces for advanced manufacturing systems and their cyber-physical manifestations in manufacturing processes. This is a fundamental missing element in the manufacturing cyber-security body of knowledge. Finally, new forensic techniques, based on constraint optimization and machine learning, will be researched to differentiate process changes indicative of cyber-attacks from common variations in manufacturing due to inherent system variability.
Related Artifacts
Presentations
How do we defend physical parts from cyber-attacks during manufacturing
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CPS: Synergy: Collaborative Research: Cyber-physical Approaches to Advanced Manufacturing Security
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Download
Posters
CPS: Synergy: Collaborative Research: Cyber-Physical Approaches to Advanced Manufacturing Security
|
Download
Publications
Impedance-based non-destructive evaluation of additively manufactured parts
Cyber-physical vulnerabilities in additive manufacturing systems: A case study attack on the .STL file with human subjects
Quality assurance in additive manufacturing through mobile computing
Taxonomies for reasoning about cyber-physical attacks in IoT-based manufacturing systems
An approach to cyber-physical vulnerability assessment for intelligent manufacturing systems
Cyber-physical vulnerability assessment in manufacturing systems
Taxonomies for Reasoning About Cyber-physical Attacks in IoT-based Manufacturing Systems.
Videos
CPS:Synergy: Collaborative Research: Cyber-Physical Approaches to Advanced Manufacturing
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CPS Domains
Critical Manufacturing Sector
Critical Infrastructure
Manufacturing
CPS Security