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Erschienen in: Electrical Engineering 1/2017

28.09.2016 | Original Paper

Power exchange among microgrids using modular-isolated bidirectional DC–DC converter

verfasst von: Reza Haghmaram, Farzad Sedaghati, Reza Ghafarpour

Erschienen in: Electrical Engineering | Ausgabe 1/2017

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Abstract

This paper investigates the operation of a DC microgrid which is connected to a DC distribution network using a modular-isolated bidirectional DC–DC converter. The bidirectional power flow capability of the proposed modular converter provides the possibility of power exchange between DC microgrid, and DC distribution network contains some microgids. The extendable configuration of the proposed modular-isolated bidirectional DC–DC converter makes it suitable for high-power applications. Using the modular DC–DC converter, an electric isolation is provided between the microgrid and distribution network. A power management strategy should be applied to ensure the predetermined power exchange between DC microgrid and DC network even in DC network islanding mode. An exchange of surplus power among the microgrids is considered in the power management strategy. The advantages of the modular converter in the DC microgrid power management facilitation are presented. Operation principles of the modular converter are experimentally verified, and then, the operation of the PV-based microgrid is discussed in different modes using the software simulations.

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Literatur
1.
Zurück zum Zitat Tummuru NR, Mishra MK, Srinivas S (2014) Multifunctional VSC controlled microgrid using instantaneous symmetrical components theory. IEEE Trans Sustain Energy 5:313–322CrossRef Tummuru NR, Mishra MK, Srinivas S (2014) Multifunctional VSC controlled microgrid using instantaneous symmetrical components theory. IEEE Trans Sustain Energy 5:313–322CrossRef
2.
Zurück zum Zitat Abdelaziz MA, Farag HE, El-Saadany EF (2014) Optimum droop parameter settings of islanded microgrids with renewable energy resources. IEEE Trans Sustain Energy 5:434–445CrossRef Abdelaziz MA, Farag HE, El-Saadany EF (2014) Optimum droop parameter settings of islanded microgrids with renewable energy resources. IEEE Trans Sustain Energy 5:434–445CrossRef
3.
Zurück zum Zitat Wang Z, Chen B, Wang J (2015) Networked microgrids for self-healing power systems. IEEE Trans Smart Grid 7:310–319CrossRef Wang Z, Chen B, Wang J (2015) Networked microgrids for self-healing power systems. IEEE Trans Smart Grid 7:310–319CrossRef
4.
Zurück zum Zitat Shahnia F, Chandrasena RP, Rajakaruna S, Ghosh A (2013) Autonomous operation of multiple interconnected microgrids with self-healing capability. In: 2013 IEEE power and energy society general meeting, Vancouver, Canada, pp 21–25 Shahnia F, Chandrasena RP, Rajakaruna S, Ghosh A (2013) Autonomous operation of multiple interconnected microgrids with self-healing capability. In: 2013 IEEE power and energy society general meeting, Vancouver, Canada, pp 21–25
5.
Zurück zum Zitat Wang Z, Chen B, Wang J, Begovic MM (2014) Coordinated energy management of networked microgrids in distribution systems. IEEE Trans Smart Grid 6:45–53 Wang Z, Chen B, Wang J, Begovic MM (2014) Coordinated energy management of networked microgrids in distribution systems. IEEE Trans Smart Grid 6:45–53
6.
Zurück zum Zitat Teixeira A, Paridari K, Sandberg H, Johansson KH (2015) Voltage control for interconnected microgrids under adversarial actions. In: 20th IEEE conference on emerging technologies and factory automation (ETFA), Sept 15–18, Luxembourg Teixeira A, Paridari K, Sandberg H, Johansson KH (2015) Voltage control for interconnected microgrids under adversarial actions. In: 20th IEEE conference on emerging technologies and factory automation (ETFA), Sept 15–18, Luxembourg
7.
Zurück zum Zitat Chen Ch, Duan Sh (2014) Optimal allocation of distributed generation and energy storage system in microgrids. IET Renew Power Gener 8:581–589CrossRef Chen Ch, Duan Sh (2014) Optimal allocation of distributed generation and energy storage system in microgrids. IET Renew Power Gener 8:581–589CrossRef
8.
Zurück zum Zitat Bae S, Kwasinski A (2012) Dynamic modeling and operation strategy for a microgrid with wind and photovoltaic resources. IEEE Trans Smart Grid 3:1867–1876CrossRef Bae S, Kwasinski A (2012) Dynamic modeling and operation strategy for a microgrid with wind and photovoltaic resources. IEEE Trans Smart Grid 3:1867–1876CrossRef
9.
Zurück zum Zitat Zhao B, Yu Q, Sun W (2012) Extended-phase-shift control of isolated bi-directional DC–DC converter for power distribution in microgrid. IEEE Trans Power Electron 27:4667–4680CrossRef Zhao B, Yu Q, Sun W (2012) Extended-phase-shift control of isolated bi-directional DC–DC converter for power distribution in microgrid. IEEE Trans Power Electron 27:4667–4680CrossRef
10.
Zurück zum Zitat Xu S, Huang AQ, Lukic S, Baran M (2012) On integration of solid-state transformer with zonal DC microgrid. IEEE Trans Smart Grid 3:975–985CrossRef Xu S, Huang AQ, Lukic S, Baran M (2012) On integration of solid-state transformer with zonal DC microgrid. IEEE Trans Smart Grid 3:975–985CrossRef
11.
Zurück zum Zitat Xunwei Y, Xu S, Xijun N, Huang A (2014) System integration and hierarchical power management strategy for a solid-state transformer interfaced microgrid system. IEEE Trans Power Electron 29:4414–4425CrossRef Xunwei Y, Xu S, Xijun N, Huang A (2014) System integration and hierarchical power management strategy for a solid-state transformer interfaced microgrid system. IEEE Trans Power Electron 29:4414–4425CrossRef
12.
Zurück zum Zitat Ding Zh, Yang Ch, Zhang Zh et al (2014) A novel soft-switching multiport bidirectional DC–DC converter for hybrid energy storage system. IEEE Trans Power Electron 29:1595–1609CrossRef Ding Zh, Yang Ch, Zhang Zh et al (2014) A novel soft-switching multiport bidirectional DC–DC converter for hybrid energy storage system. IEEE Trans Power Electron 29:1595–1609CrossRef
13.
Zurück zum Zitat Susanto J, Shahnia F, Ghosh A, Rajakaruna S (2014) Interconnected microgrids via back-to-back converters for dynamic frequency support. Power engineering conference (AUPEC), Australasian Universities, Sept 28–30, Perth, WA Susanto J, Shahnia F, Ghosh A, Rajakaruna S (2014) Interconnected microgrids via back-to-back converters for dynamic frequency support. Power engineering conference (AUPEC), Australasian Universities, Sept 28–30, Perth, WA
14.
Zurück zum Zitat Konar S, Ghosh A (2015) Interconnection of islanded DC microgrids. Power and energy engineering conference (APPEEC) IEEE PES Asia-Pacific, Nov 15–18, Brisbane, QLD Konar S, Ghosh A (2015) Interconnection of islanded DC microgrids. Power and energy engineering conference (APPEEC) IEEE PES Asia-Pacific, Nov 15–18, Brisbane, QLD
15.
Zurück zum Zitat Kumar M, Srivastava SC, Sri Niwas Singh SN, Ramamoorty M (2015) Development of a control strategy for interconnection of islanded direct current microgrids. IET Renew Power Gen 3:284–296CrossRef Kumar M, Srivastava SC, Sri Niwas Singh SN, Ramamoorty M (2015) Development of a control strategy for interconnection of islanded direct current microgrids. IET Renew Power Gen 3:284–296CrossRef
16.
Zurück zum Zitat Pashajavid E, Shahnia F, Ghosh A (2015) Interconnection of two neighboring autonomous microgrids based on small signal analysis. In: 9th International conference on power electronics and ECCE Asia (ICPE-ECCE Asia), June 1–5, Seoul, Korea Pashajavid E, Shahnia F, Ghosh A (2015) Interconnection of two neighboring autonomous microgrids based on small signal analysis. In: 9th International conference on power electronics and ECCE Asia (ICPE-ECCE Asia), June 1–5, Seoul, Korea
17.
Zurück zum Zitat Lee M, Choi W, Kim, H, Cho B (2015) Operation schemes of interconnected DC microgrids through an isolated bi-directional DC–DC converter. In: IEEE applied power electronics conference and exposition (APEC), March 15–19, Charlotte, NC Lee M, Choi W, Kim, H, Cho B (2015) Operation schemes of interconnected DC microgrids through an isolated bi-directional DC–DC converter. In: IEEE applied power electronics conference and exposition (APEC), March 15–19, Charlotte, NC
18.
Zurück zum Zitat Che L, Zhang X, Shahidehpour M, Alabdulwahab A (2015) Optimal interconnection planning of community microgrids with renewable energy sources. In: Smart Grid, IEEE Trans. doi:10.1109/TSG.2015.2456834 Che L, Zhang X, Shahidehpour M, Alabdulwahab A (2015) Optimal interconnection planning of community microgrids with renewable energy sources. In: Smart Grid, IEEE Trans. doi:10.​1109/​TSG.​2015.​2456834
19.
Zurück zum Zitat Eghtedarpour N, Farjah E (2014) Distributed charge/discharge control of energy storages in a renewable-energy-based DC micro-grid. IET Renew Power Gener 8:45–57CrossRef Eghtedarpour N, Farjah E (2014) Distributed charge/discharge control of energy storages in a renewable-energy-based DC micro-grid. IET Renew Power Gener 8:45–57CrossRef
20.
Zurück zum Zitat Qin H, Kimball JW (2014) Closed-loop control of DC–DC dual-active-bridge converters driving single-phase inverters. IEEE Trans Power Electron 29:1006–1017CrossRef Qin H, Kimball JW (2014) Closed-loop control of DC–DC dual-active-bridge converters driving single-phase inverters. IEEE Trans Power Electron 29:1006–1017CrossRef
21.
Zurück zum Zitat Qin H, Kimball JW (2014) Generalized average modeling of dual active bridge DC–DC converter. IEEE Trans Power Electron 27:2078–2084 Qin H, Kimball JW (2014) Generalized average modeling of dual active bridge DC–DC converter. IEEE Trans Power Electron 27:2078–2084
22.
Zurück zum Zitat Ogata K (2014) Modern control engineering, 5th edn. Prentice Hall, New JerseyMATH Ogata K (2014) Modern control engineering, 5th edn. Prentice Hall, New JerseyMATH
Metadaten
Titel
Power exchange among microgrids using modular-isolated bidirectional DC–DC converter
verfasst von
Reza Haghmaram
Farzad Sedaghati
Reza Ghafarpour
Publikationsdatum
28.09.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Electrical Engineering / Ausgabe 1/2017
Print ISSN: 0948-7921
Elektronische ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-016-0437-7

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