Eco‐economic optimal sizing and operation of PV‐battery systems in buildings – The Role of CO 2 price signals

Author:

Maier Laura1,Ellinger Matthias,Hering Dominik1,Müller Dirk1

Affiliation:

1. RWTH Aachen University E.ON Energy Research Center Institute for Energy Efficient Buildings and Indoor Climate Mathieustr. 10 52074 Aachen Germany

Publisher

Wiley

Subject

Building and Construction,Architecture,Environmental Engineering

Reference27 articles.

1. Working Group II.Climate Change 2022: Impacts Adaptation and Vulnerability. Summary for Policymakers. Contribution to the Sixth Assessment Report of the IPCC 27 Feb. 2022.

2. Wietschel M.et al. (2019)Integration erneuerbarer Energien durch Sektorkopplung: Analyse zu technischen Sektorkopplungsoptionen Abschlussbericht [online] Umweltbundesamt[Ed.] Reihe Climate Change. Available from:https://www.umweltbundesamt.de/sites/default/files/medien/1410/publikationen/2019‐03‐12_cc_03‐2019_sektrokopplung.

3. Doroudchi E.;Pal S. K.;Lehtonen M.;Kyyra J.(2015)Optimizing energy cost via battery sizing in residential PV/battery systems. 2015 IEEE Innovative Smart Grid Technologies – Asia (ISGT ASIA): IEEE 3–6 Nov. 2015 pp.1–6.

4. Iria J.;Huang Q.(2021)Optimal Sizing of PV‐Battery Systems in Buildings Considering Carbon Pricing. 31st Australasian Universities Power Engineering Conference (AUPEC): IEEE 26–30 Sep. 2021 pp.1–6.

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