PV Active Power Filter Combination Supplies Power To Non Linear Load

S. Anusha, P Koteswara Rao

Abstract


These days the photovoltaic (PV) era is progressively step by step, while the normal loads require all the more high-control quality. Essentially, one PV generator providing to nonlinear loads is wanted to be coordinated with a capacity as a dynamic power channel (APF). In this paper, a three-stage three-wire framework, including a nitty gritty PV generator, dc/dc support converter to separate greatest radiation control utilizing most extreme power point following, and dc/air conditioning voltage source converter to go about as an APF, is displayed. The momentary power hypothesis is connected to outline the PV-APF controller, which indicates solid exhibitions. In this venture Fuzzy controller is actualized keeping in mind the end goal to diminish the aggregate consonant twisting. The MATLAB/Simpower Systems device has demonstrated that the consolidated framework can at the same time infuse greatest power from a PV unit and remunerate the symphonious current drawn by nonlinear loads.


References


REFERENCES

Nguyen Duc Tuyen (Member, Ieee) And Goro Fujita (Member, Ieee)” Pv-Active Power Filter Combination Supplies Power To Nonlinear Load And Compensates Utility Current”

L. Hassaine, E. Olias, J. Quintero, and M. Haddadi, ‘‘Digital power factor control and reactive power regulation for grid-connected photovoltaic inverter,’’ Renewable Energy, vol. 34, no. 1, pp. 315–321, 2009.

M. G. Villalva, J. R. Gazoli, and E. R. Filho, ‘‘Comprehensive approach to modeling and simulation of photovoltaic arrays,’’ IEEE Trans. Power Electron., vol. 24, no. 5, pp. 1198–1208, May 2009.

N. R. Watson, T. L. Scott, and S. Hirsch, ‘‘Implications for distribution networks of high penetration of compact fluorescent lamps,’’ IEEE Trans. Power Del., vol. 24, no. 3, pp. 1521–1528, Jul. 2009.

I. Houssamo, F. Locment, and M. Sechilariu, ‘‘Experimental analysis of impact of MPPT methods on energy efficiency for photovoltaic power systems,’’ Int. J. Elect. Power Energy Syst., vol. 46, pp. 98–107, Mar. 2013.

M. A. G. de Brito, L. P. Sampaio, G. Luigi, G. A. e Melo, and C. A. Canesin, ‘‘Comparative analysis of MPPT techniques for PV applications,’’ in Proc. Int. Conf. Clean Elect. Power (ICCEP), Jun. 2011, pp. 99–104.

M. El-Habrouk, M. K. Darwish, and P. Mehta, ‘‘Active power filters: A review,’’ Proc. IEE – Elect. Power Appl., vol. 147, no. 5, pp. 403–413, Sep. 2000.

H. Akagi, Y. Kanagawa, and A. Nabae, ‘‘Generalized theory of the instantaneous reactive power in three-phase circuits,’’ in Proc. Int. Conf. Power Electron., Tokyo, Japan, 1983, pp. 1375–1386.

Y. W. Li and J. He, ‘‘Distribution system harmonic compensation methods: An overview of DG-interfacing inverters,’’ IEEE Ind. Electron. Mag., vol. 8, no. 4, pp. 18–31, Dec. 2014.


Full Text: PDF [Full Text]

Refbacks

  • There are currently no refbacks.


Copyright © 2013, All rights reserved.| ijseat.com

Creative Commons License
International Journal of Science Engineering and Advance Technology is licensed under a Creative Commons Attribution 3.0 Unported License.Based on a work at IJSEat , Permissions beyond the scope of this license may be available at http://creativecommons.org/licenses/by/3.0/deed.en_GB.