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Comparative Study of Model-Based Control of Energy/Current Cascade Control for a Multiphase Interleaved Fuel Cell Boost Converter

机译:多相交织燃料电池升压转换器的能量/电流级联控制模型基础控制的比较研究

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In general, fuel cells generate high-current low-voltage unregulated electricity in the form of direct current, which is not suitable for electrical appliances due to its low voltage. Therefore, a high-power boost converter is required for adjusting the output voltage from fuel cells to the desired level in order to distribute high-voltage power at a constant rate. In this study, a parallel multiphase step-up power circuits with an interleaving method was used to increase voltage and distribute electric currents in many phases to reduce the current rating of the switching device in each phase. Meanwhile, an interleaving technique was employed for shifting phases of electric currents in order to reduce the sum of ripple currents in fuel cells in response to the nonlinear behaviors of the switching circuit. This article presents a nonlinear model-based control approach based on the differential flatness method for the interleaved boost circuits used in fuel cell applications. The fuel cell converter was connected to dSPACE DS1202 MicroLabBox, as well as inspected and implemented by a polymer electrolyte membrane fuel cells (PEMFC, size 2.5 kW) in terms of steady state, dynamic characteristics, and control robustness. The findings from this study were very satisfactory, and when experimentally compared with the classical proportional–integral (PI) control scheme, it was found that the differential flatness control could better respond to load changes.
机译:通常,燃料电池以直流的形式产生高电流低压未调节电力,这不适用于由于其低电压而适用于电器。因此,需要高功率升压转换器来将从燃料电池调节到所需电平的输出电压,以便以恒定的速率分配高压功率。在该研究中,使用具有交织方法的并行多相升压功率电路来增加电压并在许多相中分配电流,以减小每个相中的开关装置的电流额定值。同时,用于响应于开关电路的非线性行为来减少电流阶段的用于减少燃料电池中的纹波电流之和的交织技术。本文提出了一种基于非线性模型的控制方法,基于燃料电池应用中使用的交错升压电路的差分平坦方法。在稳态,动态特性和控制稳健性方面,燃料电池转换器通过聚合物电解质膜燃料电池(PEMFC,尺寸2.5 kW)进行检查和实施。本研究的发现非常令人满意,当实验与经典比例 - 积分(PI)控制方案相比,发现差分平面控制可以更好地响应负载变化。

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