Sustainability and Environmental Performance

Towards Tracking Circular Construction Supply Chains: Data Carrier Performance in Realistic Experiments

Clara P Blum, Brandon S Byers, Jens J Hunhevicz, Catherine De Wolf

Published 2025

Thumbnail for Towards Tracking Circular Construction Supply Chains: Data Carrier Performance in Realistic Experiments

Abstract

Due to the need for effective track and trace systems to enable circular construction supply chains (CCSC), this study evaluated the performance of radio-frequency identification (RFID), near-field communication (NFC) chips, quick response (QR) codes and Direct Product Marking (DPM) in identifying and reading material information. Key metrics - detection speed, error rates, and user experience - were assessed and gave consideration to the differential impacts of controlled and uncontrolled experimental conditions. Findings indicate that, relative to DPM, RFID and NFC offered improved usability and reduced reading times, with minimal differences in error rates; results were strongly influenced by usability and experimental context.

Topics

AI building automationCase StudySmart Building Systems and IoT IntegrationSustainable Buildingsbig data in buildingscircular economydata templates for circularityhuman-centric IoTsensor data integration

Cite this paper

@inproceedings{f056d32c,
	doi = {10.35490/EC3.2025.324},
	url = {https://ec-3.org/publications/conference/paper/?id=EC32025_324},
	year = {2025},
	month = {July},
	publisher = {European Council on Computing in Construction},
	author = {Clara P Blum  and Brandon S Byers  and Jens J Hunhevicz  and Catherine De Wolf},
	title  = {Towards Tracking Circular Construction Supply Chains: Data Carrier Performance in Realistic Experiments},
	booktitle = {Proceedings of the 2025 European Conference on Computing in Construction},
	volume  = {6},
	isbn = {978-9-083451-31-2},
	address  = {Porto, Portugal},
	series  = {Computing in Construction},
	language = {en-GB},
	abstract = {Due to the need for effective track and trace systems to enable circular construction supply chains (CCSC), this study evaluated the performance of radio-frequency identification (RFID), near-field communication (NFC) chips, quick response (QR) codes and Direct Product Marking (DPM) in identifying and reading material information. Key metrics - detection speed, error rates, and user experience - were assessed and gave consideration to the differential impacts of controlled and uncontrolled experimental conditions. Findings indicate that, relative to DPM, RFID and NFC offered improved usability and reduced reading times, with minimal differences in error rates; results were strongly influenced by usability and experimental context.},
	issn = {2684-1150},
	Organisation = {European Conference on Computing in Construction},
	Editors = {}
}