Optimization of Micro Multi-Carrier Energy Hub Operation Under Uncertain Predictions

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Abstract

Finding an optimal schedule(s) for the buildings' energy equipment cluster is vital to realize sustainable development and energy-saving goals. However, high-impact uncertainties pose critical challenges in this regard. To relax these challenges, this paper develops an optimization model for operating the buildings' energy equipment cluster under uncertain predictions whose principal elements are the energy hub (EH) concept and the two-point estimate (TPE) method. The EH concept is used to find levels of the degree of freedom for optimization by modeling efficiently how multi-carrier energy resources and demands can be connected through this cluster of converters, conditioners, storage, and others. The TPE method is, however, used to improve the reliability and robustness of the model's predictions, leading to better decision-making under uncertainty. The TPE method integrates high-impact uncertainties related to multi-carrier energy prices and demands and the production capacity of renewable energy resources in optimization. The proposed optimization model has been applied to an industrial building, and its sufficiency and profitableness are examined in different scenarios.
OriginalsprogEngelsk
TitelIECON 2023- 49th Annual Conference of the IEEE Industrial Electronics Society
ForlagIEEE (Institute of Electrical and Electronics Engineers)
Publikationsdato2023
Artikelnummer10311962
ISBN (Trykt)979-8-3503-3183-7
ISBN (Elektronisk)979-8-3503-3182-0
DOI
StatusUdgivet - 2023
BegivenhedIECON 2023- 49th Annual Conference of the IEEE Industrial Electronics Society - , Singapore
Varighed: 16 okt. 202319 okt. 2023

Konference

KonferenceIECON 2023- 49th Annual Conference of the IEEE Industrial Electronics Society
Land/OmrådeSingapore
Periode16/10/202319/10/2023
NavnProceedings of the Annual Conference of the IEEE Industrial Electronics Society
ISSN1553-572X

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