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  4. Methodology for optimal energy system design of zero energy buildings using mixed-integer linear programming
 
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2016
Journal Article
Title

Methodology for optimal energy system design of zero energy buildings using mixed-integer linear programming

Abstract
According to EU's Energy Performance of Buildings Directive (EPBD), all new buildings shall be nearly Zero Energy Buildings (ZEB) from 2018/2020. How the ZEB requirement is defined has large implications for the choice of energy technology when considering both cost and environmental issues. This paper presents a methodology for determining ZEB buildings' cost optimal energy system design seen from the building owner's perspective. The added value of this work is the inclusion of peak load tariffs and feed-in-tariffs, the facilitation of load shifting by use of a thermal storage, along with the integrated optimisation of the investment and operation of the energy technologies. The model allows for detailed understanding of the hourly operation of the building, and how the ZEB interacts with the electricity grid through the characteristics of its net electric load profile. The modelling framework can be adapted to fit individual countries' ZEB definitions. The findings are important for policy makers as they identify how subsidies and EPBD's regulations influence the preferred energy technology choice, which subsequently determines its grid interaction. A case study of a Norwegian school building shows that the heat technology is altered from HP to bio boiler when the ZEB requirement is applied.
Author(s)
Lindberg, Karen Byskov
Doorman, G.
Fischer, David
Korpas, M.
Ånestad, A.
Sartori, I.
Journal
Energy and buildings  
Open Access
DOI
10.1016/j.enbuild.2016.05.039
Additional link
Full text
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • Elektrische Energiesysteme

  • Energiesystemtechnik

  • IKT für Energiesysteme

  • cost-optimality

  • profiles

  • liner programming

  • factor

  • energy building

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