access icon free H6-type transformerless single-phase inverter for grid-tied photovoltaic system

There has been an increasing interest in transformerless inverter for grid-tied photovoltaic (PV) system because of the benefits of lower cost, smaller volume as well as higher efficiency compared with the ones with transformer. However, one of the technical challenges of the transformerless inverter is the safety issue of leakage current which needs to be addressed carefully. In addition, according to the international regulations, transformerless inverter should be capable of handling a certain amount of reactive power. In this study, a new H6-type transformerless inverter for grid-tied PV system is proposed that can eliminate the threat of leakage current. The proposed topology has also the capability to inject reactive power into the utility grid. Three-level output voltage employing unipolar sinusoidal pulse-width modulation can be achieved with the proposed topology. The proposed topology structure and detail operation principle with reactive power control are investigated. The relationship among the existing topologies and their reactive power control capability are also discussed. The proposed topology is simulated in MATLAB/Simulink software to initially verify the accuracy of theoretical explanations. Finally, a universal prototype rated 1 kW has been built and tested. The experimental results validate the theoretical analysis and simulation results.

Inspec keywords: power grids; photovoltaic power systems; reactive power control; PWM invertors; power system control; leakage currents

Other keywords: utility grid; MATLAB-Simulink software; grid-tied PV system; power 1 kW; unipolar sinusoidal pulse-width modulation; leakage current; reactive power control capability; grid-tied photovoltaic system; H6-type transformerless single-phase inverter

Subjects: Power electronics, supply and supervisory circuits; Power and energy control; Power system control; Control of electric power systems; Solar power stations and photovoltaic power systems; DC-AC power convertors (invertors)

References

    1. 1)
    2. 2)
    3. 3)
    4. 4)
      • 1. El-Chaar, L., Lamont, L.A., Elzein, N.: ‘PV technology – industry update’. Power and Energy Society General Meeting, 2010 IEEE, 2010, pp. 16.
    5. 5)
    6. 6)
      • 26. Schmidt, D., Siedle, D., Ketterer, J.: ‘Inverter for transforming a DC voltage into an AC current or an AC voltage’. EP Patent 1,369,985, 2009.
    7. 7)
    8. 8)
    9. 9)
    10. 10)
    11. 11)
      • 31. Automatic Disconnection Device Between a Generator and the Public Low-Voltage Grid’, Germany Standard DIN VDE 0126, 2010.
    12. 12)
    13. 13)
      • 6. Bremicker, S., Greizer, F., Victor, M.: ‘Inverter, more specifically for photovoltaic plants’.  Google Patents, 2010.
    14. 14)
    15. 15)
    16. 16)
      • 14. Kerekes, T.: ‘Analysis and modeling of transformerless photovoltaic inverter systems’. Doctor of Philosophy, Electrical Engineering, Aalborg University, 2009.
    17. 17)
      • 22. Islam, M., Mekhilef, S.: ‘High efficiency transformerless MOSFET inverter for grid-tied photovoltaic system’. 29th Annual IEEE Applied Power Electronics Conf. and Exposition (APEC), 2014, pp. 33563361.
    18. 18)
      • 21. Victor, M., Greizer, F., Bremicker, S., Hübler, U.: ‘Method of converting a direct current voltage from a source of direct current voltage, more specifically from a photovoltaic source of direct current voltage, into a alternating current voltage’. United States Patents, 2008.
    19. 19)
      • 15. Zhang, L., Sun, K., Xing, Y., Xu, M.: ‘H6 transformerless full-bridge PV grid-tied inverters’, IEEE Trans. Power Electron., 2013, PP, pp. 11.
    20. 20)
    21. 21)
    22. 22)
    23. 23)
    24. 24)
    25. 25)
      • 3. Zhao, Z.: ‘High efficiency single-stage grid-tied PV inverter for renewable energy system’ (Virginia Polytechnic Institute and State University, 2012).
    26. 26)
    27. 27)
    28. 28)
      • 30. IEEE: ‘IEEE Standard Conformance Test Procedures for Equipment Interconnecting Distributed Resources With Electric Power Systems’, IEEE Std 1547.1-2005, 2005, pp. 0_154.
    29. 29)
    30. 30)
      • 25. Baojian, J., Jianhua, W., Jianfeng, Z.: ‘High-efficiency single-phase transformerless PV H6 inverter with hybrid modulation method’, IEEE Trans. Ind. Electron., 2013, 60, pp. 21042115.
    31. 31)
      • 10. Lin, M., Fen, T., Fei, Z., Xinmin, J., Yibin, T.: ‘Leakage current analysis of a single-phase transformer-less PV inverter connected to the grid’. IEEE Int. Conf. on Sustainable Energy Technologies, 2008, pp. 285289.
http://iet.metastore.ingenta.com/content/journals/10.1049/iet-pel.2014.0251
Loading

Related content

content/journals/10.1049/iet-pel.2014.0251
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading