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Challenges in Cyber-Physical Attack Detection for Building Automation Systems.

, , and . BuildSys@SenSys, page 236-239. ACM, (2023)

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Analysis of Three Indoor Localization Technologies for Supporting Operations and Maintenance Field Tasks., , , , , and . J. Comput. Civ. Eng., 26 (6): 708-719 (2012)Building-Information-Modeling-Based Earthquake Damage Assessment for Reinforced Concrete Walls., , , and . J. Comput. Civ. Eng., (2016)A Comparative Analysis of Depth-Discontinuity and Mixed-Pixel Detection Algorithms., , and . 3DIM, page 29-38. IEEE Computer Society, (2007)Assessment of the quality of as-is building information models generated from point clouds using deviation analysis., , , and . Three-Dimensional Imaging, Interaction, and Measurement, volume 7864 of SPIE Proceedings, page 78640F. SPIE, (2011)Reasoning about Building Systems and Content to Support Vulnerability Assessment in Building Emergencies., and . J. Comput. Civ. Eng., 27 (2): 118-128 (2013)Digital Twin Technologies for Autonomous Environmental Control and Life Support Systems., , , , , , , and . J. Aerosp. Inf. Syst., 21 (4): 332-347 (2024)An integrated performance analysis framework for HVAC systems using heterogeneous data models and building automation systems., , , and . BuildSys@SenSys, page 145-152. ACM, (2012)Challenges in Cyber-Physical Attack Detection for Building Automation Systems., , and . BuildSys@SenSys, page 236-239. ACM, (2023)Bridging the gap: discovering mental models in globally collaborative contexts., , , and . IWIC, page 101-110. ACM, (2009)Formalized Representation for Supporting Automated Identification of Critical Assets in Facilities during Emergencies Triggered by Failures in Building Systems., and . J. Comput. Civ. Eng., 26 (4): 519-529 (2012)