The Summary of the Inverter Used in PV System

Article Preview

Abstract:

the inverter is one of the key technologies in PV system. It transforms the DC power output by the PV panel to AC power that the grid needs. The main technologies of the inverter are the circuit topology and the control tactic. The circuit topologies of inverter including the frequency isolated PV grid-connected inverters, the high-frequency isolated PV grid-connected inverter, the single-stage non-isolated PV grid-connect inverter and the multi-level non-isolated PV grid-connected inverter. The control tactics including the voltage oriented control (VOC), the voltage-based direct power control (V-DPC), the virtual-flux oriented control (VFOC) and the virtual-flux based direct power control (VF-DPC).

You might also be interested in these eBooks

Info:

Periodical:

Pages:

616-619

Citation:

Online since:

January 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Y. Ma, P. Yang, and H. Guo, Distributed generation system development based on various renewable energy resources, in Control Conference (CCC), 2011 30th Chinese, 2011, pp.6203-6207.

Google Scholar

[2] K. Honghai, L. Shengqing, and W. Zhengqiu, Discussion on advantages and disadvantages of distributed generation connected to the grid, in Electrical and Control Engineering (lCECE), 2011 international Conference on, 2011, pp.170-173.

DOI: 10.1109/iceceng.2011.6057500

Google Scholar

[3] M. Calais and V. G. Agelidis, Multilevel converters for single-phase grid connected photovoltaic systems - an overview, in iEEE international Symposium on industrial Electronics, Pretoria, S Afr, 1998, pp.224-229.

DOI: 10.1109/isie.1998.707781

Google Scholar

[4] H. Haeberlin, Evolution of inverters for grid connected systems from 1989 to 2000, 17th European Photovoltaic Solar Energy Conference, Oct (2001).

Google Scholar

[5] Y. Huang, F. Z. Peng, J. Wang, and D. W. Yoo, Survey of the power conditioning system for PV power generation, in Proc. IEEE PESC, Jun. 18–22, 2006, p.1–6.

Google Scholar

[6] T. Kerekes, M. Liserre, R. Teodorescu, C. Klumpner, and M. Sumner, Evaluation of three-phase transformerless photovoltaic inverter topologies, IEEE Trans. Power Electron., vol. 24, no. 9, p.2202–2211, Sep. (2009).

DOI: 10.1109/tpel.2009.2020800

Google Scholar

[7] S. B. Kjaer, J. K. Pedersen, and F. Blaabjerg, A review of single-phase grid connected inverters for photovoltaic modules, IEEE Trans. Ind. Appl., vol. 41, no. 5, p.1292–1306, Sep. /Oct. (2005).

DOI: 10.1109/tia.2005.853371

Google Scholar

[8] M. Amirabadi, A. Balakrishnan, H. Toliyat, and W. Alexander, High frequency AC-link PV inverter, IEEE Trans. Ind. Electron., vol. 61, no. 1, p.281–291, Jan. (2014).

DOI: 10.1109/tie.2013.2245616

Google Scholar

[9] A. K. Balakrishnan, Soft switched high frequency ac-link converter, M.S. thesis, Elect. Comput. Eng. Dept., Texas A&M Univ., College Station, TX, USA, (2008).

Google Scholar

[10] X. Guo, w. Wu, H. Gu, and G. San, DC injection control for grid connected inverters based on virtual capacitor concept, in Electrical Machines and Systems, 2008. iCEMS 2008. International Conference on, 2008, pp.2327-2330.

Google Scholar

[11] L. Bowtell and A. Ahfock, Direct current offset controller for transformerless single-phase photovoltaic grid-connected inverters, Renewable Power Generation, iET, vol. 4, pp.428-437, (2010).

DOI: 10.1049/iet-rpg.2009.0043

Google Scholar

[12] M. P. Kazmierkowski, R. Krishnan, and F. Blaabjerg, Control in Power Electronics. London, U.K.: Academic, (2002).

Google Scholar