Building Information Theory Group

3 members · 22 papers

See this team’s papers →

Group Member

Team Leader

Team Member

Group Vision

The Building Information Theory Group is a research community that gives a quantitative definition to the information generated, exchanged and used across indoor environments, buildings and urban systems, and combines information theory with the representation, estimation, integration and decision-making of that information — establishing operating principles that run from data to knowledge, and from knowledge to service.

Research Topic

Tree–building energy interaction (urban vegetation informatics) Integrated information (Φ / φ) proxies for cyber-physical subsystems Spatiotemporal building telemetry Virtual sensing for indoor environment Agentic indoor environmental services Multi-scale mechanisms Comfort & IEQ digital services Mutual information (sensor–state dependence) Urban Heat Island (UHI) impacts on HVAC operations Indoor environmental data-to-service pipeline Thermal comfort analytics Data quality as information loss Human–AI operational supervision Urban Digital Twin for energy & IEQ services Shannon information theory for building telemetry Fault detection & diagnostics (FDD) informatics Point taxonomy & control graph WWR / envelope feature extraction at city scale Commissioning-to-operations service handoff Policy/constraint-aware service execution HVAC Informatics IEQ fault-tolerant monitoring Semantic point normalization (BAS/BMS) Information-based HVAC operations Service-ready digital twin for building operations Urban Building Informatics Built Environment Informatics District energy & campus-scale HVAC informatics IAQ informatics HVAC operational intelligence Information bottleneck for control-relevant compression Occupant-centric sensing & modeling Control-oriented state estimation (virtual sensors)