Page 53 - Hybrid-Renewable Energy Systems in Microgrids
P. 53
Microgrid architecture, control, and operation 37
[7] Solanki, J.M., Solanki, S.K., Schulz, N., 2010. Multi-agent-based reconfiguration for res-
toration of distribution systems with distributed generators. Integ. Comput. Aided Eng.
17, 331–346.
[8] Xu, L., Chen, D., 2011. Control and operation of a DC microgrid with variable generation
and energy storage. IEEE Trans. Power Delivery 26 (4), 2513–2522.
[9] Dobakhshari, A.S., Azizi, S., Ranjbar, A.M., 2011. Control of microgrids: aspects and
prospects. International Conference on Networking, Sensing and Control (ICNSC),
pp. 38–43.
[10] Liu, X., Wang, P., Loh, P.C., 2011. A hybrid AC/DC microgrid and its coordination con-
trol. IEEE Trans. Smart Grid 2 (2), 278–286.
[11] Planas, Estefanía, Gil-de-Muro, Asier, Andreu, Jon, Kortabarria, Iñigo, de Alegría, Iñigo
Martínez, 2013. General aspects, hierarchical controls and droop methods in microgrids:
a review. Renewable Sustain. Energy Rev. 17, 147–159.
[12] Katiraei, F., Iravani, R., Hatziargyriou, N., Dimeas, A., 2011. Microgrids management.
IEEE Power Energy Mag. 9 (5), 54–65.
[13] Blaabjerg, F., Teodorescu, R., Liserre, M., Timbus, A., 2006. Overview of control and
grid synchronization for distributed power generation systems. IEEE Trans. Ind. Elec-
tron. 53 (5), 1398–1409.
[14] Gil, N., Lopes, J., 2007. Hierarchical frequency control scheme for islanded multi-
microgrids operation. Power Tech, pp. 1–6.
[15] Llaria, A., Curea, O., Jimenez, J., Camblong, H., 2011. Survey on microgrids: unplanned
islanding and related inverter control techniques. Renewable Energy 36 (8), 2052–2061.
[16] Lopes, J., Moreira, C., Madureira, A., 2006. Defining control strategies for microgrids
islanded operation. IEEE Trans. Power Syst. 21 (2), 916–924.
[17] Zamora, R., Srivastava, A., 2010. Controls for microgrids with storage: review, challenges,
and research needs. Renewable Sustain. Energy Rev. 14 (7), 2009–2018.
[18] Ustun, T., Ozansoy, C., Zayegh, A., 2011. Recent developments in microgrids and
example cases around the world—a review. Renewable Sustain. Energy Rev. 15 (8),
4030–4041.
[19] Chandorkar, M., Divan, D., Adapa, R., 1993. Control of parallel connected inverters in
standalone AC supply systems. IEEE Trans. Ind. Appl. 29 (1), 136–143.
[20] Guerrero, J., Berbel, N., deVicuna, L., Matas, J., Miret, J., Castilla, M., 2005. Droop
control method for the parallel operation of online uninterruptible power systems using
resistive output impedance. IEEE Applied Power Electronics Conference and Exposition
(APEC), pp. 1716–1722.
[21] Guerrero, J., Garcia de Vicu na, L., Matas, J., Castilla, M., Miret, J., 2005. Output imped-
ance design of parallel-connected ups inverters with wireless load-sharing control. IEEE
Trans. Ind. Electron. 52 (4), 1126–1135.
[22] Chiang, S., Chang, J., 2001. Parallel control of the ups inverters with frequency-
dependent droop scheme. IEEE Power Electronics Specialist’s Conference (IECON),
vol. 2, pp. 957–961.