4.7 Article

Performance study of a multi-objective mathematical programming modelling approach for energy decision-making in buildings

Journal

ENERGY
Volume 59, Issue -, Pages 534-542

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.energy.2013.07.034

Keywords

Building; Energy efficiency; Energy improvement; Mathematical programming modelling; Multi-objective optimisation

Funding

  1. Special Account of Research Funds of the Technical University [EIE/07/475/SI2.499428]

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The improvement of energy efficiency in buildings is among the first priorities worldwide. To this end, several measures are available, and the decision maker faces a decision problem with multiple objectives having to compensate several energy, financial, and other factors in order to make a satisfactory selection. To solve this problem, a decision modelling approach is proposed herein, based upon the principles of multi-objective mathematical programming, thus capturing only these elements, which affect the decisions to be taken. To evaluate its performance under realistic operational conditions in a building, the proposed approach is applied to an existing building for retrofit purposes, and several simulation investigations are performed in order to study and evaluate the quality of the retrofit alternatives proposed by the decision model. The results of these simulation investigations confirm, that despite its reduced precision compared to the corresponding simulation model of the building, the decision model allows for the realistic comparative evaluation of the considered alternatives. The example case study reported herein, demonstrates also the functionality of the proposed approach, exploits its qualities, and highlights its strengths, weaknesses and limitations. (C) 2013 Elsevier Ltd. All rights reserved.

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