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An Electrolytic-Capacitor-Free Single-Phase High-Power Fuel Cell Converter With Direct Double-Frequency Ripple Current Control

机译:具有直接双频纹波电流控制的无电解电容器的单相大功率燃料电池转换器

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摘要

This paper proposes a direct double-frequency ripple current control in a single-phase high-power fuel cell converter that can achieve low-frequency ripple-free input current without using large electrolytic capacitors. To eliminate the double-frequency ripple current disturbance introduced by the single-phase inverter load, a proportional–resonant controller is developed to achieve an extra high control gain at designed resonant frequency. This high gain can be viewed as the virtual high impedance for blocking the double-frequency ripple energy propagation from inverter load to fuel cell stack. More particularly, the proposed control system can realize the utilization of all capacitive ripple energy sources in the system by regulating all the capacitors to have large voltage swing. In addition, this voltage swing is synchronized to keep real-time balancing of the transformer primary- and secondary-side voltages. As a result, the zero-voltage-switching operation for all switching devices in the dc–dc stage can be guaranteed. The controller design guidelines are derived based on the system small-signal model. The experimental results are presented to validate the theoretical analysis and proposed technology.
机译:本文提出了一种单相大功率燃料电池转换器的直接双频纹波电流控制,无需使用大型电解电容器即可实现低频无纹波输入电流。为了消除单相逆变器负载引入的双频纹波电流干扰,开发了比例谐振控制器,以在设计的谐振频率下实现更高的控制增益。该高增益可以看作是虚拟高阻抗,用于阻止从变频器负载到燃料电池堆的双频纹波能量传播。更具体地,所提出的控制系统可以通过将所有电容器调节为具有大的电压摆幅来实现系统中所有电容性纹波能量源的利用。此外,该电压摆幅是同步的,以保持变压器一次侧和二次侧电压的实时平衡。结果,可以确保dc-dc级中所有开关设备的零电压开关操作。控制器设计指南是基于系统小信号模型得出的。给出实验结果以验证理论分析和提出的技术。

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