DOE OSTI · 2406086
Multilevel Cybersecurity for Photovoltaic Systems
Abstract
The motivation behind this project is to protect critical infrastructure in electric power generation pertaining to solar photovoltaic (PV) systems. This growing renewable energy resource is becoming a more vital part of the nation’s energy portfolio, particularly since it has achieved grid-parity to existing generation methods in terms of cost. It is thus vital that steps be taken to ensure the cybersecurity of these assets. The project goal was to devise a multilevel cybersecurity solution to address PV security gaps at the inverter and system levels, and field test the solution under the supervision and review of a US-based solar inverter manufacturer and PV installer/operator. A two-level cyberattack defense approach was formulated whereby the first level, the solar inverter level, hardens individual devices and achieves a deeply cyber-secure inverter. The inverter level security involves a multi-layer defense-in-depth approach for securing the inverter while also providing data for the system level algorithms. The second level, the system level, addresses intrusion detection and restoration involving an ensemble of inverters and relevant systems.
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Mantooth, Homer Alan, Ye, Jin, Farnell, Chris, Mazumder, Sudip, Kim, Taesic, Seo, Gab-Su, Li, Qinghua, Di, Jia. 2024-07-10. Multilevel Cybersecurity for Photovoltaic Systems. https://doi.org/10.2172/2406086
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