Optimal battery sizing in micro-grid by linear programming

Title Optimal battery sizing in micro-grid by linear programming
Author Poyrazoğlu, Göktürk, Taşkıran, Burak Arda, Kayabölen, Naim
Publication Date: 2020-10-20
Publication Place - IEEE
Subject Flexibility, Power system management, Power engineering computing, Energy storage, Microgrid
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 978-172816264-5
Record ID 4eff7946-a9e6-42cc-ac22-711c73e2fe33
Library Location Electrical & Electronics Engineering
Date 2020-10-20
Notes TÜBİTAK
Sample Text Energy storage plays a crucial role in the micro-grid design in which no grid connection is possible. Although the cost of storage reduced in the past decade, it is still considerably high; thus, the optimization of the battery size for the micro-grid projects is an important problem. This study presents a linear programming approach to the problem of storage size minimization. Two case studies inspired by two distribution system operators in Turkey are presented with the details characteristics of supply and demand. The realistic dataset makes the findings of the case studies valuable. While the diesel generator capacity increases in a microgrid, the battery size reduces. However, the number of cycles does not change much. The optimal battery charging profile has a positive correlation with the diesel generation profile.
DOI 10.1109/GPECOM49333.2020.9247853
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Optimal battery sizing in micro-grid by linear programming

Author Poyrazoğlu, Göktürk, Taşkıran, Burak Arda, Kayabölen, Naim
Publication Date 2020-10-20
Publication Place - IEEE
Subject Flexibility, Power system management, Power engineering computing, Energy storage, Microgrid
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 978-172816264-5
Record ID 4eff7946-a9e6-42cc-ac22-711c73e2fe33
Library Location Electrical & Electronics Engineering
Date 2020-10-20
Notes TÜBİTAK
Sample Text Energy storage plays a crucial role in the micro-grid design in which no grid connection is possible. Although the cost of storage reduced in the past decade, it is still considerably high; thus, the optimization of the battery size for the micro-grid projects is an important problem. This study presents a linear programming approach to the problem of storage size minimization. Two case studies inspired by two distribution system operators in Turkey are presented with the details characteristics of supply and demand. The realistic dataset makes the findings of the case studies valuable. While the diesel generator capacity increases in a microgrid, the battery size reduces. However, the number of cycles does not change much. The optimal battery charging profile has a positive correlation with the diesel generation profile.
DOI 10.1109/GPECOM49333.2020.9247853
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