Recent advancements on the development of microgrids

Qing Li1, Zhao Xu1, Li Yang2
1Department of Electrical Engineering, The Hong Kong Polytechnic University, Hung Hom, Hong Kong, China
2School of Electrical Engineering, Zhejiang University, Yugu Road, Hangzhou, China

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Tài liệu tham khảo

Lopes JAP, Hatziargyriou N, Mutale J et al (2007) Integrating distributed generation into electric power systems: A review of drivers, challenges and opportunities. Electr Power Syst Res 77(9):1189–1203

Lidula NWA, Rajapakse AD (2011) Microgrids research: A review of experimental microgrid and test systems. Renew Sust Energ Rev 15(1):186–202

Peas Lopes JA, Moreira CL, Madureira AG (2006) Defining control strategies for microgrids islanded operation. IEEE Trans Power Syst 21(2):916–924

Hart DG, Kunsman SA, Luyster B (2013) Microgrids integrating renewable energy sources-(RES) to improve reliability. PAC world 25: 54–59

Smith M, Ton D (2013) Key connection: The U.S. department of energy’s microgrid initiative. IEEE Power Energ Mag 11(4):22–27

Vaccaro A, Popov M, Villacci D et al (2011) An integrated framework for smart microgrids modeling, monitoring, control, communication, and verification. P IEEE 99(1):119–132

Tsikallakis AG, Hatziargyriou ND (2008) Centralized control for optimizing microgrids operation. IEEE Trans Energ Conver 23(1):241–248

Katiraei F, Iravani R, Hatziargyriou N et al (2008) Microgrids management. IEEE Power Energ Mag 6(3): 54–65

Guerrero JM, Váquez JC, Savaghebi M et al (2010) Hierarchical control of power plants with microgrid operation. In: Proceedings of the 36th annual conference on IEEE Industrial Electronics Society (IECON’10), Glendale, 7–10 November 2010, pp 3006–3011

Wandhare RG, Thale S, Agarwal V (2013) Reconfigurable hierarchical control of a microgrid developed with PV, wind micro-hydro, fuel cell and ultra-capacitor. In: Proceedings of the 28th annual IEEE applied power electronics conference and exposition (APEC’13), Long Beach, 17–21 March 2013, pp 2799–2806

Bidram A, Davoudi A, Lewis FL et al (2013) Distributed cooperative secondary control of microgrids using feedback linearization. IEEE Trans Power Syst 28(3):3462–3470

Mojica-Nava E, Macana CA, Quijano N (2014) Dynamic population games for optimal dispatch on hierarchical microgrid control. IEEE Trans Syst Man Cy: Syst 44(3):306–317

Yang H, Yi D, Zhao J et al (2013) Distributed optimal dispatch of virtual power plant via limited communication. IEEE Trans Power Syst 28(3):3511–3512

McArhur SDJ, Catterson VM, Hatziargyriou ND et al (2007) Multi-agent systems for power engineering applications–Part I: concepts, approaches, and technical challenges. IEEE Trans Power Syst 22(4):1743–1752

Anderson PM, Mirheydar M (1992) An adaptive method for setting underfrequency load shedding relays. IEEE Trans Power Syst 7(2):647–655

Jung J, Liu CC, Tanimoto SL et al (2002) Adaptation in load shedding under vulnerable operating conditions. IEEE Trans Power Syst 17(4):1199–1205

Zaidi AA, Kupzog F, Zia T et al (2010) Load recognition for automated demand response in microgrids. In: Proceedings of the 36th annual conference on IEEE Industrial Electronics Society (IECON’10), Glendale, 7–10 November 2010, pp 2442–2447

Bai D, He J, Yang X et al (2013) Under frequency load shedding scheme based on information sharing technology. In: Proceedings of the 22nd international conference and exhibition on electricity distribution (CIRED’13), Stockholm, 10–13 June 2013, pp 468–471

CERTS: Consortium for Electric Reliability Technology Solutions. http://certs.lbl.gov/certs-load.html . Accessed 2 Mar 2014

Kirby BJ (2007) Load response fundamentally matches power system reliability requirements. In: Proceedings of the 2007 IEEE Power Engineering Society general meeting (PES’07),Tampa, 24–28 June 2007, 6 pp

Zhao Q, Li M, Zhang H (2006) Spinning reserve from responsive load via intelligent management network. In: Proceedings of the 2006 IEEE international conference on networking, sensing and control (ICNSC’06),Fort Lauderdale, 23–25 April 2006, pp 715–720

Hu W, Chen Z, Bak-Jensen B (2010) Optimal load response to time-of-use power price for demand side management in Denmark. In: Proceedings of the 2010 Asia-Pacific power and energy engineering conference (APPEEC’10),Chengdu, 28–31 March 2010, 4 pp

Gupta P, Bhhhatia RS, Jain DK (2013) Adaptive protection schemes for the microgrid in a smart grid scenario: technical challenges. In: Proceedings of the 2013 IEEE innovative smart grid technologies-Asia (ISGT-Asia’13), Bangalore, 10–13 November 2013, 5 pp

Han Y, Hu X, Zhang D (2010) Study of adaptive fault current algorithm for microgrid dominated by inverter based distributed generators. In: Proceedings of the 2nd IEEE international symposium on power electronics for distributed generation systems, Hefei, 16–18 June 2010, pp 852–854

Jiang W, He ZY, Bo ZQ (2010) The overview of research on microgrid protection development. In: Proceedings of the 2010 international conference on intelligent system design and engineering application (ISDEA’10),Changsha, 13–14 October 2010, pp 692–697

Sortomme E, Venkata SS, Mitra J (2010) Microgrid protection using communication-assisted digital relays. IEEE Trans Power Deliver 25(4):2789–2796

Advanced architectures and control concepts for more microgrids. http://www.microgrids.eu/index.php?page=kythnos&id=2 . Accessed 5 Mar 2014

Eto J, Lasseter R, Schenkman B et al (2009) Overview of the CERTS microgrid laboratory test bed. In: Proceedings of the 2009 CIGRE/IEEE PES joint symposium on integration of wide-scale renewable resources into the power delivery system, Calgary, 29–31 July 2009, 7 pp

CERTS: Consortium for Electric Reliability Technology Solutions. http://certs.lbl.gov/certs-der.html . Accessed 5 Mar 2014

SPIDERS microgrid project secures military installations. https://share.sandia.gov/news/resources/news_releases/spiders/#.U-GqodLUO54 . Accessed 6 May 2014