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Design and experimental investigations of a smart battery energy storage system for frequency control in microgrids
The frequency control process and ensuring the security of supply in microgrids (MG) with high penetration of renewable energy sources demand the development of specific control systems and energy storage resources. This paper presents a three-phase battery energy storage system (BESS), designed to support the frequency in autonomous MG. Besides the basic functions, the proposed BESS includes enhanced features, which improves the MG frequency response. When placing the BESS near a consumer, which may also include small generators, the local power variations can be partially or totally compensated, thus relieving the MG of these perturbations. The proposed solution is experimentally evaluated within a laboratory MG prototype and with a 5 kW BESS.
Design and experimental investigations of a smart battery energy storage system for frequency control in microgrids
The frequency control process and ensuring the security of supply in microgrids (MG) with high penetration of renewable energy sources demand the development of specific control systems and energy storage resources. This paper presents a three-phase battery energy storage system (BESS), designed to support the frequency in autonomous MG. Besides the basic functions, the proposed BESS includes enhanced features, which improves the MG frequency response. When placing the BESS near a consumer, which may also include small generators, the local power variations can be partially or totally compensated, thus relieving the MG of these perturbations. The proposed solution is experimentally evaluated within a laboratory MG prototype and with a 5 kW BESS.
Design and experimental investigations of a smart battery energy storage system for frequency control in microgrids
Serban, I. (author) / Marinescu, C. (author)
2014-03-01
11 pages
Article (Journal)
Electronic Resource
English
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