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Večkriterijska optimizacija pametnih stavb z evolucijskim algoritmom
ID Ambrožič, Nejc (Author), ID Robnik Šikonja, Marko (Mentor) More about this mentor... This link opens in a new window, ID Filipič, Bogdan (Co-mentor)

URLURL - Presentation file, Visit http://eprints.fri.uni-lj.si/3126/ This link opens in a new window

Abstract
Energetsko učinkovito delovanje bivanjskih stavb je ključnega pomena pri globalnem zmanjšanju porabe električne energije, saj povpraševanje po energiji, skladno s tehnološkim razvojem in povečano dostopnostjo tehnologije, narašča. Za optimiziranje delovanja pametnih stavb je v diplomskem delu predstavljen in razvit evolucijski algoritem, ki upošteva kriterija energetske učinkovitosti in uporabnikovega udobja. Namesto ene rešitve je moč poiskati Pareto optimalno fronto, na kateri se nahajajo kompromisne rešitve po več kriterijih. S poganjanjem simulacij v različnih testnih scenarijih smo pokazali, da algoritem na podlagi začetnega urnika, ki ga nastavi uporabnik, najde kompromisne rešitve, ki žrtvujejo udobje, a so stroškovno učinkovitejše.

Language:Unknown
Keywords:pametna stavba, večkriterijska optimizacija, evolucijski algoritem, Pareto optimalnost
Work type:Bachelor thesis/paper
Organization:FRI - Faculty of Computer and Information Science
Year:2015
PID:20.500.12556/RUL-72620 This link opens in a new window
COBISS.SI-ID:1536551107 This link opens in a new window
Publication date in RUL:29.09.2015
Views:1166
Downloads:220
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Secondary language

Language:Unknown
Title:Multicriteria optimization of smart buildings using evolutionary algorithm
Abstract:
Energy efficiency of residential buildings is crucial to the global reduction of electricity consumption, as energy demand, in line with technological development and the increased availability of technology, is increasing. To optimize the functioning of smart buildings, an evolutionary algorithm that takes into account the criteria of energy efficiency and comfort of the user, is presented and developed. Instead of a single solution, it is possible to find a Pareto optimal front, consisting of trade-off solutions. By simulating different test scenarios we show that the algorithm finds trade-off solutions based on the initial schedule set by the user. The obtained solutions sacrifice comfort, but are more cost-effective.

Keywords:smart house, multicriteria optimization, evolutionary algorithm, Pareto optimality

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