DOE OSTI · 2396331
Adaptive Cyber-Physical Resilience for Building Control Systems
Abstract
The main goal of the project is to develop an AI-based process layer cybersecurity suite for detection, isolation and mitigation of cyber-attack effects on operation of building energy management systems (BEMS). The following constituent key technologies were developed under the program towards fulfilling the program objectives: (1) developed a high fidelity BEMS testbed for generation of training data and validation of developed technologies; (2) developed a physics informed ML based attack detection and localization module (ADL) capable of detecting high impact stealthy attacks (HISA - attacks causing 30% energy utilization but no immediate visible impact otherwise) with 98% accuracy; (3) developed a methodology to determine ’representative days’ to limit the data required for training; (4) developed a virtual sensing system that can reconstruct affected sensors with 10% error for the same HISA set; (5) developed a resilient model predictive control system that can continue operation of the BEMS without jeopardizing stability for the HISA set; and (6) integrated and deployed all the constituent modules and demonstrated the efficacy of the technology in real-time in a hardware in loop simulation.
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Roychowdhury, Subhrajit, Bakker, Craig, Vrabie, Draguna, Fu, Yiwei, Yang, Weizhong, Tang, Johnny (Jiacheng), Rahman, Ali, McNulty, Zachary. 2023-12-31. Adaptive Cyber-Physical Resilience for Building Control Systems. https://doi.org/10.2172/2396331
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