Open Access   Article Go Back

Review Paper on Minimum DC Bus Voltage for AC-DC Single Stage Full Bridge Converter

Rahul Dev Raman1 , Lokesh Shukla2

Section:Review Paper, Product Type: Journal Paper
Volume-7 , Issue-10 , Page no. 111-115, Oct-2019

CrossRef-DOI:   https://doi.org/10.26438/ijcse/v7i10.111115

Online published on Oct 31, 2019

Copyright © Rahul Dev Raman, Lokesh Shukla . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

View this paper at   Google Scholar | DPI Digital Library

How to Cite this Paper

  • IEEE Citation
  • MLA Citation
  • APA Citation
  • BibTex Citation
  • RIS Citation

IEEE Style Citation: Rahul Dev Raman, Lokesh Shukla, “Review Paper on Minimum DC Bus Voltage for AC-DC Single Stage Full Bridge Converter,” International Journal of Computer Sciences and Engineering, Vol.7, Issue.10, pp.111-115, 2019.

MLA Style Citation: Rahul Dev Raman, Lokesh Shukla "Review Paper on Minimum DC Bus Voltage for AC-DC Single Stage Full Bridge Converter." International Journal of Computer Sciences and Engineering 7.10 (2019): 111-115.

APA Style Citation: Rahul Dev Raman, Lokesh Shukla, (2019). Review Paper on Minimum DC Bus Voltage for AC-DC Single Stage Full Bridge Converter. International Journal of Computer Sciences and Engineering, 7(10), 111-115.

BibTex Style Citation:
@article{Raman_2019,
author = {Rahul Dev Raman, Lokesh Shukla},
title = {Review Paper on Minimum DC Bus Voltage for AC-DC Single Stage Full Bridge Converter},
journal = {International Journal of Computer Sciences and Engineering},
issue_date = {10 2019},
volume = {7},
Issue = {10},
month = {10},
year = {2019},
issn = {2347-2693},
pages = {111-115},
url = {https://www.ijcseonline.org/full_paper_view.php?paper_id=4904},
doi = {https://doi.org/10.26438/ijcse/v7i10.111115}
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
DO = {https://doi.org/10.26438/ijcse/v7i10.111115}
UR - https://www.ijcseonline.org/full_paper_view.php?paper_id=4904
TI - Review Paper on Minimum DC Bus Voltage for AC-DC Single Stage Full Bridge Converter
T2 - International Journal of Computer Sciences and Engineering
AU - Rahul Dev Raman, Lokesh Shukla
PY - 2019
DA - 2019/10/31
PB - IJCSE, Indore, INDIA
SP - 111-115
IS - 10
VL - 7
SN - 2347-2693
ER -

VIEWS PDF XML
303 253 downloads 131 downloads
  
  
           

Abstract

This paper presents a single-stage circuit topology consisting of the association of a full-bridge isolated dc–dc converter and two input inductors and two input diodes connected to the mains network, in order to obtain an isolated ac/dc switch mode power supply, with sinusoidal input current. The proposed topology does not use an input bridge rectifier, common in similar applications. The current in the two input inductors can therefore, flow in both directions. Consequently, the proposed topology equally distributes the current by the four-bridge transistors that provide four input parallel boost power factor correctors (PFCs). The use of the four bridges permitting the accurate simultaneous regulation of output voltage and input current is hereby described.

Key-Words / Index Term

Full-bridge converters, Input current shaping, low-distortion input current, single-stage power factor correctors (PFCs)

References

[1] K. C. Iseng and T. 1. Liang, "Analysis of integrated boost- flyback step up converter," Processing Inst. Elect. Eng. Elect. Power Appl., vol. 152, no. 2,pp. 217- 225, Mar. 2005.
[2] R. J. Wai and R. Y. Ouan, "High step-up converter with coupled inductor," IEEE Irans. Power Electron. vol. 20, no. 5, pp. 25- 1035, Sep. 2005.
[3] R. J. Wai, C. Y. Lin, C. Y. Lin, R. Y. Ouan, and Y. R. Chang, "High efficiency power conversion system for kilowatt-level stand-alone generation unit with low input voltage," IEEE Irans. Ind. Electron. vol. 55, no. 10, pp. 3702- 3714, Oct. 2008.
[4] L. S. Yang, T. J. Liang, and J. F. Chen, `Transformer-Iess dc- dc converter with high voltage gain, "IEEE Irans. Ind. Electron. vol. 56, no. 8,pp. 3144- 3152, Aug. 2009.
[5] F. L. Luo, "Six self-lift dc- dc converters, voltage lift technique," IEEE Irans. Ind. Electron. vol. 48, no. 6, pp. 1268- 1272, Oec. 2001.
[6] F. L. Luo and H. Ye, "Positive output super-lift converters, "IEEE Irans. Power Electron. vol. 18, no. I , pp. 5- 113, Jan. 2003.
[7] T. F. Wu, Y. S. Lai, 1. C. Hung, and Y. M. Chen, "Boost converter with coupled inductors and buck- boost type of active clamp, "IEEE Irans. Ind. Electron. vol. 55, no. I , pp. 154-162, Jan. 2008.
[8] R. 1. Wai and R. Y. Ouan, "High step-up converter with coupled inductor," IEEE Irans. Power Electron. vol. 20, no. 5, pp. 1025- 1035, Sep. 2005.
[9] T. F. Wu, Y. S. Lai, J. C. Hung, and Y. M. Chen, "Boost converter with coupled inductors and buck- boost type of active clamp," IEEE Irans. Ind. Electron. vol. 55, no. I, pp. 154-162, Jan. 2008.
[10] D. C. Lee and D. S. Lim, “AC voltage and current sensorless control of three-phase PWM rectifiers,” IEEE Trans. Power Electron., vol. 17, no. 6, pp. 883–890, Oct. 2002.
[11] J. Rodr´ıguez et al., “PWM regenerative rectifiers: State of the art,” IEEE Trans. Ind. Electron., vol. 52, no. 1, pp. 5–22, Feb. 2005.
[12] N. Zargari and G. Joos, “Performance investigation of a currentcontrolled voltage-regulated PWM rectifier in rotating and stationary frames,” IEEE Trans. Ind. Electron., vol. 42, no. 4, pp. 396–401, Aug. 1995.
[13] I. Agirman and V. Blasko, “A novel control method of a VSC without AC line voltage sensors,” IEEE Trans. Ind. Appl, vol. 39, no. 2, pp. 519–524, Apr. 2003.
[14] K. Smedley et al., “Unified constant-frequency integration control of active power filters-steady-state and dynamics,” IEEE Trans. Power Electron., vol. 16, no. 3, pp. 428–436, May 2001.
[15] C. Qiao and K. Smedley, “Unified constant-frequency integration control of three-phase standard bridge boost rectifiers with power-factor correction,” IEEE Trans. Ind. Electron., vol. 50, no. 1, pp. 100–107, Feb. 2003.
[16] T. Jin et al., “A universal vector controller for three-phase PFC, APF, STATCOM, and grid-connected inverter,” in Nineteenth Annual, Applied Power Electronics Conference and Exposition(APEC), IEEE, vol. 1. IEEE, 2004, pp. 594–600.
[17] Revathi V I, Muhammedali Shafeeque K" Closed Loop Operation of High Boost OC-OC Converter Operating in CCM Mode" in Proc. International Journal of Scientific Engineering and Applied Science (USEAS) - vol.l , no.4, June 2015.
[18] Revathi V I , Muhammedali Shafeeque K "A Novel High Boost OC-OC Converter for Oistributed Generation System" IEEE ICCCS Conference, 2014
[19] Yi-Ping Hsieh, Jiann-Fuh Chen, Isorng-Juu Liang, and Lung-Sheng Yang," Novel High Step-Up OC- OC Converter with Coupled-Inductor and Switched- Capacitor Iechniques", IEEE Irans. lnd. Electron., vol. 59, no. 2, Feb,2012.
[20] Y.-C. Li, C.-L. Chen, "A novel primary-side regulation scheme for single-stage high-power-factor AC–DC LED driving circuit", IEEE Trans. Ind. Electron., vol. 60, no. 11, pp. 4979-4986, Nov. 2013.
[21] A. A. Fardoun, E. H. Ismail, N. M. Khraim, A. J. Sabzali, M. A. Al-Saffar, "Bridgeless high-power-factor buck-converter operating in discontinuous capacitor voltage mode", IEEE Trans. Ind. Appl., vol. 50, no. 5, pp. 66-72, Sep./Oct. 2014.
[22] S. Chattopadhyay and V. Ramanarayanan, “Digital implementation of a line current shaping algorithm for three phase high power factor boost rectifier without input voltage sensing,” IEEE Trans. Power Electron., vol. 19, no. 3, pp. 709–721, May 2004.
[23] A. G. V. Anand et al., “Unity power factor rectifier using scalar control technique,” in International Conference on Power System Technology, PowerCon 2004, vol. 1. Singapore, IEEE, 2004, pp. 862–867.
[24] S. Ben-Yaakov and I. Zeltser, “The dynamics of a PWM boost converter with resistive input,” IEEE Trans. Ind. Electron, vol. 46, no. 3, pp. 613– 619, Jun. 1999.
[25] D. Ghodke et al., “Modified one-cycle controlled bidirectional highpower-factor AC-to-DC converter,” IEEE Trans. Ind. Electron., vol. 55, no. 6, pp. Jun. 2459–2472, Jun. 2008.