Sumathy P, Navamani J Divya, Mohamed Ali Jagabar Sathik, Lavanya A, Vishnuram Pradeep, Bajaj Mohit, Dost Mohammadi Shir Ahmad, Prokop Lukas
Department of Electrical Engineering, SRM Institute of Science and Technology, Kattankulathur, Chennai, India.
Department of Electrical Engineering, Graphic Era (Deemed to be University), Dehradun, 248002, India.
Sci Rep. 2024 Feb 28;14(1):4899. doi: 10.1038/s41598-024-55708-z.
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.
在过去几年中,高升压DC-DC转换器因其广泛的应用而备受关注。除了可再生能源应用外,高压/高脉冲转换器还被有效地用于水处理应用中。该转换器提出了一种二次转换器和SEPIC转换器与二极管-电容器单元的组合。这种拓扑结构通过单个半导体开关产生高压重复脉冲,并减少了元件数量。元件上的应力小于文献中报道的高增益转换器。通过增加二极管-电容器单元的数量,该拓扑结构具有可扩展的特性,而不会影响应力。高脉冲产生拓扑结构的优越性在文献中通过类似的转换器得到了验证。本文讨论了水处理所需的额定拓扑结构的nL5模拟器结果。对一个按比例缩小的50W原型进行了测试,以在各种输入电压下产生高压脉冲,并对分析研究进行了验证。