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Volume 13 | Number 2 | Year 2014 | Article Id. IJETT-V13P236 | DOI : https://doi.org/10.14445/22315381/IJETT-V13P236Designing and Parametric Variation of PI Controller for Buck Converter for Constant Voltage Applications
Sugandhra Pal Singh , Deepak Kumar Singh , Harish Kumar , Rheesabh Dwivedi
Citation :
Sugandhra Pal Singh , Deepak Kumar Singh , Harish Kumar , Rheesabh Dwivedi, "Designing and Parametric Variation of PI Controller for Buck Converter for Constant Voltage Applications," International Journal of Engineering Trends and Technology (IJETT), vol. 13, no. 2, pp. 169-174, 2014. Crossref, https://doi.org/10.14445/22315381/IJETT-V13P236
Abstract
In this paper, we study on buck dc/dc converter of high efficiency by soft switching technique. The paper will focus on modeling, analysis, and design and simulation buck converter architecture. The converter is designed in CCM (continuous conduction mode). The voltage mode control strategy is proposed by using pulse width modulation (PWM) with a proportional-integral (PI). The effectiveness of the step down converter is verified through simulation results using control oriented simulator like MATLAB/Simulink tools. The circuit operation, designs and simulation results are mentioned in this paper.
Keywords
Buck Converter, Total Harmonic Distortion, Pulse width modulation and PI control.
References
[1] Sanjeev Singh and Bhim Singh, “Comprehensive study of single-phase AC-DC power factor corrected converters with high-frequency isolation” IEEE Trans. on Industrial Informatics, vol. 7, no. 4, Nov. 2011, , pp. 540-556.
[2] Sanjeev Singh and Bhim Singh, “Power quality improved PMBLDCM drive for adjustable speed application with reduced sensor buck-boost PFC converter” in proc. IEEE 11th ICETET, 2011, pp.180-184.
[3] Boopathy.K and Dr.Bhoopathy Bagan .K, “Buck Boost converter with improved transient response for low power applications” in Proc. IEEE SIEA, Sep 2011, pp. 155-160.
[4] Altamir Ronsani and Ivo Barbi, “Three-phase single stage AC-DC buck-boost converter operating in buck and boost modes” in Proc. IEEE, 2011, pp.176-182.
[5] Sanjeev Singh and Bhim Singh, “An adjustable speed PMBLDCM drive for air conditioner using PFC Zeta converter,” Int. J. Power Electron. (IJPElec), vol. 3, no. 2, pp. 171–188, Apr. 2011.
[6] B. Singh, B. N. Singh, A. Chandra, K. Al-Haddad, A. Pandey, and D. P. Kothari, “A review of single-phase improved power quality ac–dc converters,” IEEE Trans. Ind. Electron., vol. 50, no. 5, pp. 962–981, Oct. 2003.
[7] Sanjeev Singh and Bhim Singh, “Single-phase power factor controller topologies for permanent magnet brushless DC motor drives,” in IET Power Electron., 2010, Vol. 3, Iss. 2, pp. 147–175.
[8] Sanjeev Singh and Bhim Singh, “A voltage controlled adjustable speed PMBLDCM drive using a single-stage PFC half-bridge converter,” in Proc. IEEE APEC’10, 2010, pp. 1976–1983.
[9] S. C. Raviraj and P. C. Sen, “Comparative study of proportional-integral, sliding mode, and flay logic controllers for power converters,” IEEETransactions on Industrial Applications, vol 33, no.2, pp.518— 524, MariApr. 1997.
[10] Sanjeev Singh and Bhim Singh, “Power quality improved PMBLDCM drive for adjustable speed application with reduced sensor buck-boost PFC converter” in proc. IEEE 11th ICETET, 2011, pp.180-184.
[11] Venkstarsmanan, A. Sabanoivc, and S. Culç “Sliding mode control of dc-to-dc converters,” in Proc. IEEE ConE Industrial Electronics, Control Instnjmentations (IECON), pp. 25 1-258, 1985.
[12] M. Namnabat, M. Baysti Poodeh, S. Eshlehardiha, “Comparison the Control Methods in Improvement the Performance of the DC-DC Converter”, The 7’ international conference on power electronics, 22- 26, EXCO, Daegu, Korea, 2007.