Single Phase AC-DC Hybrid Boost-SEPIC (HBS) Converter for Improver Power Quality at High Duty Cycle and HBS Converter with Three Phase Inverter Integrated with a LCL Filter

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dc.contributor.author Rahman, Mohammad Dehan
dc.contributor.author Kabir, Md Saif
dc.contributor.author Rabbi, Md Nazaf
dc.contributor.author Sarker, Mohammad Abir Hassan
dc.date.accessioned 2020-11-04T17:32:02Z
dc.date.available 2020-11-04T17:32:02Z
dc.date.issued 2018-11-15
dc.identifier.citation [1] Wilmar Martinez, Camilo A. Cortes, Jun Imaoka, Kazuhiro Umetani, Masayoshi Yamamoto, "Current ripple modeling of an interleaved high step-up converter with coupled inductor", Future Energy Electronics Conference and ECCE Asia (IFEEC 2017 - ECCE Asia) 2017 IEEE 3rd International, pp. 1084-1089, 2017. [2] Y. Liang, "A New Type of Statcom Based on Cascading Voltage Source Inverters with Phase-shitted Unipolar SPWM", IAS'98 [3] D.-H. Lee, F. C. Lee, "New Cascade Switch Multilevel PWM Converters", APEC'99, pp. 329-324. [4] L. Huber, M. M. Jovanovic, "A design approach for server power supplies for networking applications", Proc. 15th Annu. IEEE Appl. Power Electron. Conf. Exp., pp. 1163-1169, 2000. [5] L. Muller, J. W. Kimball, "High gain DC-DC converter based on the cockcroft-walton multiplier", IEEE Transactions on Power Electronics, vol. 31, no. 9, September 2016. [6] J. P. de Souza, DE Oliveira, R. Gules, E. F. R. Romaneli, A. A. Badin, "A high static gain CUK DC-DC converter", IEEE 13th Brazilian Power Electronics Conference and 1st Southern Power Electronics Conference, 2015. [7] A. A. A. Freitas, F. L. Tofoli, E. M. Sa, S. Daher, F. L. M. Antunes, "High-voltage gain DC-DC boost converter with coupled inductors for photovoltaic systems", IET Power Electronics, vol. 8, no. 10, April 2015. [8] R. W. Erickson, D. Maksimovic, Fundamentals of Power Electronics, Kluwer Academic Publishers, 2001. [9] . Q. Zhao, F. Tao, F. C. Lee, P. Xu, J. Wei, "A simple and effective to alleviate the rectifier reverse-recovery problem in continuous-current-mode boost converter", IEEE Trans. Power Electron, vol. 16, no. 5, pp. 649-658, Sep. 2001. [10] C. T. Pan, C. M. Lai, M. C. Cheng, L. T. Hsu, "A low switch voltage stress interleaved boost converter for power factor correction", IEEE Int. Conf. Power Electronics and Drive Systems, pp. 49-54, 2009. [11] Mohammad H. Rashid, "Power Electronics: Circuits, Devices and Applications", Prentice-Hall, Inc., Englewood Cliffs, Book, Second Edition, 1993. [12] Mohan Ned, Undeland Tore M. and Robbins William P. ,"Power Electronics ,Converters Applications and Design", John Wiley & Sons, Inc., Book, 1995. [13] B. W. Williams, " Power Electronics; Devices, Drivers, Applications and Passive Components", Book, Second Edition, Educational Low-Priced Books Scheme; ELBS, 1992. [14] [1] Xiao-qiang Yi. Research on Control Technology of 300KW High Power Three-Phase Inverter. Huazhong University of Science and Technology Degree Thesis, 2007, pp.63-64. [15] [2] Shen Guoqiao, Xuancai Zhu, Jun Zhang, Dehong Xu, "A new feedback method for PR current control of LCL-filter-based grid-connected inverter", IEEE Trans. Ind. Electron, vol. 57, no. 6, pp. 2033-2041, 2010. [16] [3] K. H. Ahmed, A. M. Massoud, S. J. Finney, B. W. Williams, "Optimum selection of state feedback variables PWM inverters control", Proc. IEEE PEMD, pp. 125-129, Apr. 2008. [17] [4] Zhou Keliang, Low Kay-Soon, Yigang Wang, Luo Fang-Lin, Bin Zhang, "Zero-phase odd-harmonic repetitive controller for a single-phase PWM inverter", IEEE Trans. Power Electron, vol. 21, no. 1, pp. 193-201, 2006. [18] [5] Mohamed Ya-Ri, Ehab F. El-Saadany, "An improved deadbeat current control scheme with a novel adaptive self-tuning load model for a three-phase PWM voltage-source inverter", IEEE Trans. Ind. Electron, vol. 54, no. 2, pp. 747-759, 2007. [19] [6] Zhang Kai, Li Peng, Jian Xiong, Jian Chen, "State-feedback-with-integral Control plus Repetitive Control for PWM Inverters", Zhongguo Dianji Gongcheng Xuebao(Proceedings of the Chinese Society of Electrical Engineering), vol. 26, no. 10, pp. 56-62, 2006. [20] [7] Sakui Masaaki, Hiroshi Fujita, "An analytical method for calculating harmonic currents of a three-phase diode- bridge rectifier with dc filter", IEEE Trans. Power Electron, vol. 9, no. 6, pp. 631-637, 1994. [21] [8] Chunyuan Wang, Tao Tian, Yuanqian Ye, "Research on Three-Phase Inverter SVPWM Modulation Based on FPGA", Intelligent Human-Machine Systems and Cybernetics (IHMSC) 2013 5th International Conference on, vol. 2, pp. 222-225, 2013. [22] [9] R. Roberts, "Energy Sources and Conversion Techniques", American Scientist, vol. 61, no. 1, pp. 66-75, January-February 1973. [23] [10] J. N. Nassikas, "National Energy Policy: Directions and developments", IEEE Transactions on Industry Applications, vol. IA-9, no. 5, pp. 498-505, September-October 1973. [24] [11] E. L. Ralph, "Large scale solar electric power generation", Solar Energy Journal, vol. 14, pp. 11-20, 1972. [25] [12] C. M. Sunmers, "A solar to electrical energy system with intermediate energy storage", Conference paper presented at the IEEE Winter Power Meeting, 1967-January. [26] [13] C. M. Summers, "A quantitative evaluation of power density and storage capacity for solar and wind energy", Proceedings of a conference on Energy Conversion and Storage, pp. 15-33, 1963-October. [27] [14] Mohammad H. Rashid, "Power Electronics: Circuits, Devices and Applications", Prentice-Hall, Inc., Englewood Cliffs, Book, Second Edition, 1993. [28] [15] Mohan Ned, Undeland Tore M. and Robbins William P. ,"Power Electronics ,Converters Applications and Design", John Wiley & Sons, Inc., Book, 1995. [29] [16] B. W. Williams, " Power Electronics; Devices, Drivers, Applications and Passive Components", Book, Second Edition, Educational Low-Priced Books Scheme; ELBS, 1992. en_US
dc.identifier.uri http://hdl.handle.net/123456789/653
dc.description Supervised by Dr. Golam Sarowar Associate Professor, Department of Electrical and Electronic Engineering Islamic University of Technology (IUT) Board Bazar, Gazipur-1704 Bangladesh. Date: 5-11-2018 en_US
dc.description.abstract Modern day devices often use an AC source as input even though they are operated with DC voltage. In order to have a suitable and flexible DC output, an AC-DC converter is used. However the conventional converters are not suited for high voltage output without sacrificing conversion efficiency. In this paper a new topology of Hybridized Boost-SEPIC (HBS) converter is proposed. This converter is capable of delivering output voltage as high as 1255V at high conversion efficiency. Maximum power factor of 0.97 and minimum THD of 9.94% is ensured by current mode PI controller. The need of renewable energy is on the rise especially the use of solar energy. Solar energy usually provides with DC power. In order to harvest solar energy effectively, the HBS converter is also integrated with a three phase inverter, with an LCL filter to provide AC supply. en_US
dc.language.iso en en_US
dc.publisher Department of Electrical and Electronic Engineering, Islamic University of Technology, Board Bazar, Gazipur, Bangladesh en_US
dc.title Single Phase AC-DC Hybrid Boost-SEPIC (HBS) Converter for Improver Power Quality at High Duty Cycle and HBS Converter with Three Phase Inverter Integrated with a LCL Filter en_US
dc.type Thesis en_US


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