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首页> 外文期刊>International journal of electrical power and energy systems >Performance comparison of input current ripple reduction methods in UPS applications with hybrid PEM fuel cell/supercapacitor power sources
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Performance comparison of input current ripple reduction methods in UPS applications with hybrid PEM fuel cell/supercapacitor power sources

机译:具有混合PEM燃料电池/超级电容器电源的UPS应用中输入电流纹波降低方法的性能比较

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摘要

An uninterruptible power supply (UPS) system with different input current ripple reduction methods is proposed, and a comparison research has been conducted about these methods. The proposed UPS system consists of a 63-cell 300 W proton exchange membrane (PEM) fuel cell stack, two 16-cell superca-pacitors (SCs) in series, a high-efficiency push-pull DC/DC converter and a half-bridge DC/AC inverter. Besides that the traditional push-pull DC/DC converter has inherent advantages of low input-current stress and high voltage conversion ratio, the SCs, LC filter, and an active clamp circuit are employed to reduce the input current ripples in the UPS system. First, the input current ripple generation and performance without an external component are analyzed and modeled in the PEM fuel cell. Then the input current ripple reduction methods mentioned above are proposed and operated in the designed UPS system. Finally, the experimental results show that the input current ripple can be further reduced by using different current ripple reduction approaches, and the active compensation method has better performance than the passive compensation method. The input current ripple is less than 5% of the rated input current.
机译:提出了一种采用不同输入电流纹波降低方法的不间断电源系统,并进行了比较研究。拟议的UPS系统包括一个63单元的300 W质子交换膜(PEM)燃料电池堆,两个串联的16单元的超级电容器(SC),一个高效的推挽式DC / DC转换器和一个半桥式DC / AC逆变器。除了传统的推挽式DC / DC转换器具有低输入电流应力和高电压转换比的固有优势外,还采用SC,LC滤波器和有源钳位电路来减少UPS系统中的输入电流纹波。首先,在PEM燃料电池中对输入电流纹波的产生和性能进行了分析和建模。然后,提出了上述输入电流纹波降低方法,并在设计的UPS系统中运行。最后,实验结果表明,采用不同的电流纹波减小方法可以进一步减小输入电流纹波,并且有源补偿方法的性能优于无源补偿方法。输入电流纹波小于额定输入电流的5%。

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