Planning method for joint operation of integrated energy storage system considering reliability

A joint operation planning method for integrated energy storage systems considering reliability is proposed. Firstly, the planning of the power exchange level of the energy storage system is achieved by calculating the optimal power exchange level of the supercapacitor, constructing a model for the...

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Published inE3S web of conferences Vol. 385; p. 1034
Main Author Xu, Yuanyuan
Format Journal Article Conference Proceeding
LanguageEnglish
Published Les Ulis EDP Sciences 01.01.2023
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Abstract A joint operation planning method for integrated energy storage systems considering reliability is proposed. Firstly, the planning of the power exchange level of the energy storage system is achieved by calculating the optimal power exchange level of the supercapacitor, constructing a model for the optimal configuration of the two-layer energy storage, and using an algorithm for the solution of the model to optimise it. In the experiments, the joint operation planning performance of the proposed method is verified. The experimental results show that the model prediction accuracy is high when the proposed method is used for the joint planning of the integrated energy storage system, and has a more satisfactory joint operation planning performance.
AbstractList A joint operation planning method for integrated energy storage systems considering reliability is proposed. Firstly, the planning of the power exchange level of the energy storage system is achieved by calculating the optimal power exchange level of the supercapacitor, constructing a model for the optimal configuration of the two-layer energy storage, and using an algorithm for the solution of the model to optimise it. In the experiments, the joint operation planning performance of the proposed method is verified. The experimental results show that the model prediction accuracy is high when the proposed method is used for the joint planning of the integrated energy storage system, and has a more satisfactory joint operation planning performance.
Author Xu, Yuanyuan
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Cites_doi 10.1016/j.aej.2021.11.012
10.24996/ijs.2021.62.1.26
10.1109/ACCESS.2021.3052907
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Conference Proceeding
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StartPage 1034
SubjectTerms Algorithms
Compressed air
Efficiency
Electricity
Energy storage
Model accuracy
Optimization
Optimization algorithms
Power supply
Storage systems
Supply & demand
System reliability
Technology Acceptance Model
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