用于光伏氢系统的低成本软开关DC-DC变换器和自耦变压器

G. Scheible, H. Solmecke, D. Hackstein
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引用次数: 3

摘要

在优化的光伏供电制氢系统中,必须通过DC-DC电源转换器将不同水平的直流电压连接起来。为了实现光伏和电解的耦合,开发了一种新的降压DC-DC功率转换器,该转换器采用IGBT和自耦变压器,并采用高频零电压开关概念来降低损耗。该概念允许传统的PWM控制,高利用率的组件和低组件计数。通过软开关的概念,利用自耦变压器的漏感,电磁干扰低。循环无功能量低,辅助开关的额定值也低。对于燃料电池的工作,一种新的升压功率转换器已经开发出来,它也使用自变压器,但(由于输入电压低)使用MOSFET和再生电压钳。该功率转换器目前在德国Julich研究中心的太阳能氢电厂运行。给出了两种功率变换器的电路分析和测试结果。效率达到非常高的值,超过94%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low cost soft switching DC-DC converter with autotransformer for photovoltaic hydrogen systems
In optimized photovoltaic-supplied hydrogen production systems, quite different levels of DC-voltages have to be linked via DC-DC power converters. For coupling of photovoltaics and electrolysis, a new step down DC-DC power converter has been developed, which uses an IGBT and an autotransformer together with a high frequency, zero-voltage switching concept to reduce losses. The concept allows conventional PWM control, high utilization of components and low components count. Through the soft switching concept, which uses the autotransformers leakage inductance, electromagnetic interferences are low. The circulating reactive energy is low, as well as the rating of the auxiliary switch. For fuel cell operation, a new step-up power converter has been developed, which also uses an autotransformer but operates (due to the low input voltage) with a MOSFET and a regenerative voltage clamp. This power converter is now operating in the solar hydrogen plant in the Research Center Julich (Germany). Circuit analysis and measurement results of both power converters are presented. Efficiencies reach very high values of more than 94%.
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