Differential Evolution-based System for Net-zero Energy Buildings Under Climate Change
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-1222-3_10
Reference58 articles.
1. Abdulla K, De Hoog J, Muenzel V, Suits F, Steer K, Wirth A, Halgamuge S (2018) Optimal operation of energy storage systems considering forecasts and battery degradation. IEEE Trans Smart Grid 9(3):2086–2096
2. Athienitis A, O’Brien W (2015) Modeling, design, and optimization of net-zero energy buildings. John Wiley & Sons
3. Attia S, Gratia E, De Herde A, Hensen JL (2012) Simulation-based decision support tool for early stages of zero-energy building design. Energy Build 49:2–15
4. Belcher SE, Hacker JN, Powell DS (2005) Constructing design weather data for future climates. Build Serv Eng Res Technol 26(1):49–61
5. Chan AL, Chow T-T, Fong SK, Lin JZ (2006) Generation of a typical meteorological year for Hong Kong. Energy Convers Manage 47(1):87–96
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