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2020
Journal Article
Title

From residential electric load profiles to flexibility profiles

Title Supplement
A stochastic bottom-up approach
Abstract
This paper presents a stochastic bottom-up model for flexibility in the residential electric load profile. The model accounts for user-behaviour and all relevant technologies, characterising their diversity in sizing and controller settings. The flexibility of technology is mapped into a linear electrical storage equivalent model, which is parameterised on-the-fly during simulation of the load profiles. Using a linear storage representation makes it suitable for optimisation methods that are commonly used in optimal controls. The model is used to study the flexibility of individual technologies as well as of a residential area in Germany taking into account technology penetration rates. The results indicate that EV and PV battery systems offer the largest values of switchable power and storage capacity. However when technology penetration rates are taken into account, heat pumps emerge as a major provider of flexibility.
Author(s)
Fischer, David
Surmann, Arne  
Biener, Wolfgang
Selinger-Lutz, Oliver
Journal
Energy and buildings  
DOI
10.1016/j.enbuild.2020.110133
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • Leistungselektronik

  • Netze und Intelligente Systeme

  • electric load profile

  • flexibility

  • optimal control

  • smart grid

  • stochastic bottom-up modelling

  • intelligentes Netz

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