Calibration of a High-Resolution Dynamic Model for Detailed Investigation of the Energy Flexibility of a Zero Emission Residential Building

Author:

Clauß John,Vogler-Finck PierreORCID,Georges LaurentORCID

Publisher

Springer International Publishing

Reference20 articles.

1. E. Fabrizio, V. Monetti, Methodologies and advancements in the calibration of building energy models. Energies 8, 2548–2574 (2015)

2. N. Zibin, R. Zmeureanu, J.A. Love, in A Bottom-up Method to Calibrate Building Energy Models Using Building Automation System (BAS) Trend Data. Aalborg Universitet CLIMA 2016—Proceedings of the 12th REHVA World Congress (2016)

3. F. Roberti, U.F. Oberegger, A. Gasparella, Calibrating historic building energy models to hourly indoor air and surface temperatures: methodology and case study. Energy Build. 108, 236–243 (2015)

4. M. Taheri, F. Tahmasebi, A. Mahdavi, B. Ecology, in Two Case Studies in Optimization-Based Thermal Building Performance Model Calibration. Central European Symposium on Building Physics (2013)

5. P. Paliouras, N. Matzaflaras, R.H. Peuhkuri, J. Kolarik, Using measured indoor environment parameters for calibration of building simulation model—a passive house case study. Energy Procedia 78, 1227–1232 (2015)

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