Implementation of Optimal Two-Stage Scheduling of Energy Storage System Based on Big-Data-Driven Forecasting—An Actual Case Study in a Campus Microgrid
Autor: | Dong-Hwan Shin, Jae-Beom Im, Byeong-Cheol Jeong, Jae-Young Park, Young-Jin Kim |
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Jazyk: | angličtina |
Rok vydání: | 2019 |
Předmět: |
Schedule
Mathematical optimization Control and Optimization mixed integer linear programming (MILP) Computer science Energy Engineering and Power Technology lcsh:Technology energy storage system (ESS) implementation Internet of Things (IoT) microgrid (MG) microgrid energy management system (MEMS) open-source optimal scheduling two-stage Energy storage Scheduling (computing) Electrical and Electronic Engineering Engineering (miscellaneous) Integer programming Operating cost Renewable Energy Sustainability and the Environment business.industry lcsh:T Photovoltaic system Renewable energy Microgrid business Energy (miscellaneous) |
Zdroj: | Energies; Volume 12; Issue 6; Pages: 1124 Energies, Vol 12, Iss 6, p 1124 (2019) |
ISSN: | 1996-1073 |
DOI: | 10.3390/en12061124 |
Popis: | Optimal operation scheduling of energy storage systems (ESSs) has been considered as an effective way to cope with uncertainties arising in modern grid operation such as the inherent intermittency of the renewable energy sources (RESs) and load variations. This paper proposes a scheduling algorithm where ESS power inputs are optimally determined to minimize the microgrid (MG) operation cost. The proposed algorithm consists of two stages. In the first stage, hourly schedules during a day are optimized one day in advance with the objective of minimizing the operating cost. In the second stage, the optimal schedule obtained from the first stage is repeatedly updated every 5 min during the day of operation to compensate for the uncertainties in load demand and RES output power. The ESS model is developed considering operating efficiencies and then incorporated in mixed integer linear programming (MILP). Penalty functions are also considered to acquire feasible optimal solutions even under large forecasting errors in RES generation and load variation. The proposed algorithm is verified in a campus MG, implemented using ESSs and photovoltaic (PV) arrays. The field test results are obtained using open-source software and then compared with those acquired using commercial software. |
Databáze: | OpenAIRE |
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