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http://documenta.ciemat.es/handle/123456789/5348
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| Título : | Multifunctional HIL Testbench for Hybrid Energy Storage Systems Analysis |
| Autor : | Nájera, Jorge Blaco, Marcos Navarro, Gustavo Rausell, Eduardo Urda, Valentín Lafoz, Marcos |
| Palabras clave : | Hardware-In-the-Loop hybrid energy storage experimental tests characterization validation |
| Fecha de publicación : | 2025 |
| Editorial : | IET (Institution of Engineering and Technology) |
| Citación : | Nájera, J., Blanco, M., Navarro, G., Rausell, E., Urda, V., & Lafoz, M. (2025, June). Multifunctional HIL testbench for hybrid energy storage systems analysis. In 9th Hybrid Power Plants & Systems Workshop (HYB 2025) (Vol. 2025, pp. 81–86). IET |
| Citación : | IET Conference Proceedings;Volume 2025, Issue 16 |
| Resumen : | This paper presents a multifunctional Hardware-inthe- Loop (HIL) testing facility developed by CIEMAT’s Unidad de Accionamientos Eléctricos for analyzing and validating hybrid energy storage systems (HESS). The facility integrates lithium-ion battery systems (Li-BESS), supercapacitors (SCs), and flywheel (FW) storage, alongside a real-time emulation platform. Two distinct case studies are discussed: the HYBRIDHYDRO project, which couples hydroelectric generation with Li-BESS and SCs to mitigate mechanical wear and provide frequency regulation, and the POSEIDON project, examining the hybridization of SCs or FWs with existing Li-BESS in maritime vessels to reduce battery aging. Experimental tests demonstrate that appropriately tuned hybrid configurations effectively reduce mechanical stress in hydroelectric systems and battery aging in maritime applications, highlighting significant technical benefits. |
| URI : | http://documenta.ciemat.es/handle/123456789/5348 |
| Aparece en las colecciones: | Comunicaciones, congresos de Tecnología
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