Extendable high gain low current/high pulse modified quadratic–SEPIC converter for water treatment applications
Substantial attention has been drawn over the past few years by high step-up dc-dc converters owing to their applications in a wide range. Apart from renewable energy applications, high voltage/ high pulse converters are efficiently used in water treatment applications. The converter suggested a com...
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Published in: | Scientific reports Vol. 14; no. 1; p. 4899 |
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Abstract | Substantial attention has been drawn over the past few years by high step-up dc-dc converters owing to their applications in a wide range. Apart from renewable energy applications, high voltage/ high pulse converters are efficiently used in water treatment applications. The converter suggested a combination of Quadratic and SEPIC converters with a diode-capacitor cell. This topology generates high-voltage repetitive pulses with a single semiconductor switch and reduced component count. The stress across the components is less than the high-gain converters reported in the literature. The topology has an extendable feature by increasing the number of diode-capacitor cells without affecting the stress. The superiority of the high pulse generating topology is validated with a similar converter in the literature. This paper discusses the nL5 simulator results for the proposed rated topology required for water treatment. A scaled-down 50 W prototype is tested for various input voltages to generate high voltage pulse, and the analytical study is validated. |
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AbstractList | Substantial attention has been drawn over the past few years by high step-up dc-dc converters owing to their applications in a wide range. Apart from renewable energy applications, high voltage/ high pulse converters are efficiently used in water treatment applications. The converter suggested a combination of Quadratic and SEPIC converters with a diode-capacitor cell. This topology generates high-voltage repetitive pulses with a single semiconductor switch and reduced component count. The stress across the components is less than the high-gain converters reported in the literature. The topology has an extendable feature by increasing the number of diode-capacitor cells without affecting the stress. The superiority of the high pulse generating topology is validated with a similar converter in the literature. This paper discusses the nL5 simulator results for the proposed rated topology required for water treatment. A scaled-down 50 W prototype is tested for various input voltages to generate high voltage pulse, and the analytical study is validated. Abstract Substantial attention has been drawn over the past few years by high step-up dc-dc converters owing to their applications in a wide range. Apart from renewable energy applications, high voltage/ high pulse converters are efficiently used in water treatment applications. The converter suggested a combination of Quadratic and SEPIC converters with a diode-capacitor cell. This topology generates high-voltage repetitive pulses with a single semiconductor switch and reduced component count. The stress across the components is less than the high-gain converters reported in the literature. The topology has an extendable feature by increasing the number of diode-capacitor cells without affecting the stress. The superiority of the high pulse generating topology is validated with a similar converter in the literature. This paper discusses the nL5 simulator results for the proposed rated topology required for water treatment. A scaled-down 50 W prototype is tested for various input voltages to generate high voltage pulse, and the analytical study is validated. |
ArticleNumber | 4899 |
Author | Vishnuram, Pradeep Sumathy, P. Mohamed Ali, Jagabar Sathik Dost Mohammadi, Shir Ahmad Navamani, J. Divya Prokop, Lukas Lavanya, A. Bajaj, Mohit |
Author_xml | – sequence: 1 givenname: P. surname: Sumathy fullname: Sumathy, P. organization: Department of Electrical Engineering, SRM Institute of Science and Technology – sequence: 2 givenname: J. Divya surname: Navamani fullname: Navamani, J. Divya email: divyanaj@srmist.edu.in organization: Department of Electrical Engineering, SRM Institute of Science and Technology – sequence: 3 givenname: Jagabar Sathik surname: Mohamed Ali fullname: Mohamed Ali, Jagabar Sathik organization: Department of Electrical Engineering, SRM Institute of Science and Technology – sequence: 4 givenname: A. surname: Lavanya fullname: Lavanya, A. organization: Department of Electrical Engineering, SRM Institute of Science and Technology – sequence: 5 givenname: Pradeep surname: Vishnuram fullname: Vishnuram, Pradeep organization: Department of Electrical Engineering, SRM Institute of Science and Technology – sequence: 6 givenname: Mohit surname: Bajaj fullname: Bajaj, Mohit email: thebestbajaj@gmail.com organization: Department of Electrical Engineering, Graphic Era (Deemed to be University), Hourani Center for Applied Scientific Research, Al-Ahliyya Amman University, Graphic Era Hill University, Applied Science Research Center, Applied Science Private University – sequence: 7 givenname: Shir Ahmad surname: Dost Mohammadi fullname: Dost Mohammadi, Shir Ahmad email: sh_ahmad.dm@au.edu.af organization: Department of Electrical and Electronics, Faculty of Engineering, Alberoni University – sequence: 8 givenname: Lukas surname: Prokop fullname: Prokop, Lukas organization: ENET Centre, VSB—Technical University of Ostrava |
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Keywords | HPSQB Water treatment High gain Multiplier cell High voltage pulse |
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Title | Extendable high gain low current/high pulse modified quadratic–SEPIC converter for water treatment applications |
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