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Grid-connected fuel cell system based on a boost-inverter with a battery back-up unit

机译:基于升压逆变器的网格连接的燃料电池系统,带电池备用单元

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In general, two power conversion stages are required when low-voltage unregulated fuel cell (FC) output is conditioned to generate AC power. In this paper, the boost-inverter topology that achieves both boosting and inversion functions in a single-stage is used as a building block to develop a single-phase grid-connected FC-system which offers high conversion efficiency, low-cost and compactness. The proposed system incorporates additional battery-based energy storage and a DC-DC bi-directional converter to support the slow dynamics of the FC. The single-phase boost-inverter is voltage-mode controlled and the DC-DC bi-directional converter is current-mode controlled. The low-frequency current ripple is supplied by the battery which minimizes the effects of such ripple being drawn directly from the FC itself. Moreover, this system can operate either in a grid-connected or stand-alone mode. In the grid-connected mode, the boost-inverter is able to control the active (P) and reactive (Q) power using an algorithm based on a Second Order Generalized Integrator (SOGI) which provides a fast signal conditioning for single-phase systems. Analysis, simulation and experimental results from a laboratory prototype are presented to confirm the validity of the proposed system.
机译:通常,当低压未调节的燃料电池(FC)输出被调节以产生AC电源时,需要两个电力转换阶段。在本文中,在单级中实现升压和反转功能的升压逆变器拓扑用作构建块,以开发一个单相网连接的FC系统,该系统提供高转换效率,低成本和紧凑性。该提出的系统包括额外的基于电池的能量存储和DC-DC双向转换器,以支持FC的慢速动态。单相升压逆变器是电压模式控制,DC-DC双向转换器是电流模式控制。低频电流纹波由电池提供,这最小化了直接从FC自身绘制这种波纹的效果。此外,该系统可以以网格连接或独立模式操作。在网格连接模式中,升压逆变器能够使用基于二阶通用积分器(SOGI)的算法来控制有源(P)和无功(Q)功率,该算法提供单相系统的快速信号调节。提出了实验室原型的分析,模拟和实验结果,以确认所提出的系统的有效性。

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