- By:
- Chung, Jihoon ; Huang, Sen ; Lian, Jianming ; Katipamula, Srinivas; Lutes, Robert
- Page Number:
- 764-775
- Volume:
- 12
- Book Title:
- Proceedings of SimBuild Conference 2026
- Publication Date:
- June 10, 2026
- Publisher Location:
- IBPSA-USA, Minneapolis, Minnesota, United States of America
- Conference Name:
- SimBuild 2026
- Conference Location:
- Minneapolis, Minnesota, United States of America
- Conference Sponsor:
- International Building Performance Simulation Association (IBPSA-USA)
- View DOI Listing:
- https://doi.org/10.26868/30680611.2026.1365
Abstract
Abstract: Small and medium-sized commercial buildings (SMCBs) represent 94% of U.S. commercial buildings but encounter substantial obstacles in adopting Building Energy Management (BEM) systems. Current approaches exhibit fundamental limitations: vendor-specific API platforms restrict interoperability through proprietary ecosystems; commercial automation software demands extensive technical expertise and licensing costs; open-source IoT solutions lack native support for building automation protocols and semantic models. This paper introduces a configuration-driven web interface framework addressing the gap between smart device advancements and accessible BEM software infrastructure for SMCBs. The framework leverages VOLTTRON middleware integrated with an automated converter that processes unified YAML configurations into heterogeneous system files, reducing required configuration artifacts from six separate files to a single unified specification. The system architecture enables vendor-agnostic operation through BACnet and Modbus protocols while supporting semantic building model integration via automated Brick Schema parsing. Configuration-driven interfaces automatically adapt to diverse HVAC types without custom development. Simulation-based validation using BOPTEST demonstrates automatic interface generation between fan coil and hydronic systems, with the automated converter successfully generating all platform-specific outputs from the single YAML input. The result demonstrates the framework's capability to streamline BEM system deployment through reduced configuration complexity. This work bridges simulation capabilities with operational deployment, demonstrating how virtual testbeds validate generalizable software frameworks for real-world building automation.