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Novel High Step-Up DC–DC Converter for Distributed Generation System

机译:用于分布式发电系统的新型高升压DC-DC转换器

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In this paper, a novel high step-up dc–dc converter for distributed generation systems is proposed. The concept is to utilize two capacitors and one coupled inductor. The two capacitors are charged in parallel during the switch-off period and are discharged in series during the switch-on period by the energy stored in the coupled inductor to achieve a high step-up voltage gain. In addition, the leakage-inductor energy of the coupled inductor is recycled with a passive clamp circuit. Thus, the voltage stress on the main switch is reduced. The switch with low resistance $R_{rm DS(ON)}$ can be adopted to reduce the conduction loss. In addition, the reverse-recovery problem of the diodes is alleviated, and thus, the efficiency can be further improved. The operating principle and steady-state analyses are discussed in detail. Finally, a prototype circuit with 24-V input voltage, 400-V output voltage, and 200-W output power is implemented in the laboratory to verify the performance of the proposed converter.
机译:在本文中,提出了一种用于分布式发电系统的新型高升压DC-DC转换器。该概念是利用两个电容器和一个耦合电感器。这两个电容器在断开期间会被并联充电,而在接通期间会被存储在耦合电感器中的能量串联放电,以实现较高的升压电压增益。另外,耦合电感器的漏电感能量通过无源钳位电路进行回收。因此,减小了主开关上的电压应力。可以采用低电阻$ R_ {rm DS(ON)} $的开关来减小导通损耗。另外,减轻了二极管的反向恢复问题,因此,可以进一步提高效率。详细讨论了工作原理和稳态分析。最后,在实验室中实现了具有24V输入电压,400V输出电压和200W输出功率的原型电路,以验证所提出转换器的性能。

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