Conventional Droop Methods for Microgrids
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-59750-4_10
Reference13 articles.
1. Wu, D., Tang, F., Dragicevic, T., Vasquez, J. C., & Guerrero, J. M. (2015). A control architecture to coordinate renewable energy sources and energy storage systems in islanded microgrids. IEEE Transactions on Smart Grid, 6(3), 1156–1166.
2. Marwali, M. N., Jin-Woo, J., & Keyhani, A. (2004). Control of distributed generation systems - part II: Load sharing control. IEEE Transactions on Power Electronics, 19(6), 1551–1561.
3. Rocabert, J., Luna, A., Blaabjerg, F., & Rodríguez, P. (2012). Control of power converters in AC microgrids. IEEE Transactions on Power Electronics, 27(11), 4734–4749.
4. Joung, K. W., Kim, T., & Park, J.-W. (2019). Decoupled frequency and voltage control for stand-alone microgrid with high renewable penetration. IEEE Transactions on Industry Applications, 55(1), 122–133.
5. Guerrero, J. M., Vasquez, J. C., Matas, J., Vicuna, L. G. d., & Castilla, M. (2011). Hierarchical control of droop-controlled AC and DC microgrids – A general approach toward standardization. IEEE Transactions on Industrial Electronics, 58(1), 158–172.
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