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Cyber-Physical Systems Virtual Organization
Read-only archive of site from September 29, 2023.
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Projects
CPS: Breakthrough: Collaborative Research: Securing Smart Grid by Understanding Communications Infrastructure Dependencies
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Submitted by sajaldas on Tue, 03/15/2016 - 5:13pm
Project Details
Lead PI:
sajaldas
Co-PI(s):
Simone Silvestri
Mariesa Crow
Performance Period:
09/01/15
-
08/31/19
Institution(s):
Missouri Science and Technology
Sponsor(s):
National Science Foundation
Award Number:
1545037
1364 Reads. Placed 233 out of 804 NSF CPS Projects based on total reads on all related artifacts.
Abstract:
Smart grid includes two interdependent infrastructures: power transmission and distribution network, and the supporting telecommunications network. Complex interactions among these infrastructures lead to new pathways for attack and failure propagation that are currently not well understood. This innovative project takes a holistic multilevel approach to understand and characterize the interdependencies between these two infrastructures, and devise mechanisms to enhance their robustness. Specifically, the project has four goals. The first goal is to understand the standardized smart grid communications protocols in depth and examine mechanisms to harden them. This is essential since the current protocols are notoriously easy to attack. The second goal is to ensure robustness in state estimation techniques since they form the basis for much of the analysis of smart grid. In particular, the project shall exploit a steganography-based approach to detect bad data and compromised devices. The third goal is to explore trust-based attack detection strategies that combine the secure state estimation with power flow models and software attestation to detect and isolate compromised components. The final goal is to study reconfiguration strategies that combine light-weight prediction models, stochastic decision processes, intentional islanding, and game theory techniques to mitigate the spreading of failures and the loss of load. A unique aspect of smart grid security that will be studied in this project is the critical importance of timeliness, and thus a tradeoff between effectiveness of the mechanisms and the overhead introduced. The project is expected to provide practical techniques for making the smart grid more robust against failures and attacks, and enable it to recover from large scale failures with less loss of capacity. The project will also train students in the multidisciplinary areas of power systems operation and design, networking protocols, and cyber-physical security.
Related Artifacts
Presentations
CPS: Breakthrough: Collaborative Research: Securing Smart Grid by Understanding Communications Infrastructure Dependencies
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Posters
CPS: Breakthrough: Collaborative Research: Securing Smart Grid by Understanding Communications Infrastructure Dependencies
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Securing Smart Grid by Understanding Communications Infrastructure Dependencies
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Publications
Design of efficient lightweight strategies to combat DoS attack in delay tolerant network routing
A Novel Approach for Efficient Usage of Intrusion Detection System in Mobile Ad Hoc Networks
Securing loosely-coupled collaboration in cloud environment through dynamic detection and removal of access conflicts
JAMMY: A Distributed and Dynamic Solution to Selective Jamming Attack in TDMA WSNs
Characterizing Cascade Failures in Inter-Dependent Smart Grid Networks
Towards Real Time Detection of Stealthy Data Falsification in Smart Meter Infrastructure
A Harmonic Mean Comparison Approach for Defense Against Data falsification in IoT Networks
Reliable energy-efficient uplink transmission for neighborhood area networks in smart grid
Statistical Security Incident Forensics against Data Falsification in Smart Grid Advanced Metering Infrastructure
Survey of Security Advances in Smart Grid: A Data Driven Approach
Videos
CPS: Breakthrough: Collaborative Research: Securing Smart Grid by Understanding Communications Infrastructure Dependencies
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CPS Domains
Smart Grid
Control
Energy
Modeling
Critical Infrastructure
Education
Foundations