Sharma Preeti, Hasanpour Sara, Kumar Rajneesh
Department of Electrical and Electronics Engineering, BITS Pilani, Pilani Campus, Pilani, Rajasthan, 333031, India.
Department of Electrical Engineering, Ramsar Branch, Islamic Azad University, Ramsar, 46919-6643, Iran.
Sci Rep. 2024 Oct 8;14(1):23384. doi: 10.1038/s41598-024-73984-7.
This work introduces a novel DC/DC converter with an incredibly high voltage gain, specifically designed for renewable energy generating systems. The proposed circuit features a coupled inductor integrated with a quadratic boost circuit and a voltage multiplier cell to achieve a substantial step-up in voltage gain. Ultra-high voltage gain, minimum reverse recovery in diodes, low voltage stress on switching devices, continuous input current, and a shared ground between the input source and output load are some of this topology's key features. The coupled inductor design reduces power dissipation in magnetic components by distributing the high DC source current with an additional input inductor. Additionally, regenerative clamp circuits alleviate voltage stresses on power switches during simultaneous switching. Theoretical analysis covering the operating principle, steady-state behavior, and efficiency is discussed in detail. An evaluation of the suggested topology's performance is conducted using a 250-W, 25-V/400-V lab prototype.
这项工作介绍了一种具有极高电压增益的新型DC/DC转换器,专为可再生能源发电系统设计。所提出的电路具有一个与二次升压电路和倍压单元集成的耦合电感,以实现电压增益的大幅提升。超高电压增益、二极管中的最小反向恢复、开关器件上的低电压应力、连续输入电流以及输入源和输出负载之间的公共接地是该拓扑结构的一些关键特性。耦合电感设计通过使用额外的输入电感来分配高直流源电流,从而降低了磁性元件中的功耗。此外,再生箝位电路可减轻同时开关期间功率开关上的电压应力。详细讨论了涵盖工作原理、稳态行为和效率的理论分析。使用一个250W、25V/400V的实验室原型对所建议拓扑结构的性能进行了评估。