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An Efficient and Robust Current Control for Polymer Electrolyte Membrane Fuel Cell Power System

机译:用于聚合物电解质膜燃料电池动力系统的高效且坚固的电流控制

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摘要

Taking into account the restricted ability of polymer electrolyte membrane fuel cell (PEMFC) to generate energy, it is compulsory to present techniques, in which an efficient operating power can be achieved. In many applications, the PEMFC is usually coupled with a high step-up DC-DC power converter which not only provides efficient power conversion, but also offers highly regulated output voltage. Due to the no-linearity of the PEMFC power systems, the application of conventional linear controllers such as proportional-integral (PI) did not succeed to drive the system to operate precisely in an adequate power point. Therefore, this paper proposes a robust non-linear integral fast terminal sliding mode control (IFTSMC) aiming to improve the power quality generated by the PEMFC; besides, a digital filter is designed and implemented to smooth the signals from the chattering effect of the IFTSMC. The stability proof of the IFTSMC is demonstrated via Lyapunov analysis. The proposed control scheme is designed for an experimental closed-loop system which consisted of a Heliocentric hy-Expert™ FC-50W, MicroLabBox dSPACE DS1202, step-up DC-DC power converter and programmable DC power supplies. Comparative results with the PI controller indicate that a reduction of 96% in the response time could be achieved using the suggested algorithm; where, up to more than 91% of the chattering phenomenon could be eliminated via the application of the digital filter.
机译:考虑到聚合物电解质膜燃料电池(PEMFC)产生能量的限制能力,它是必要的技术,其中可以实现有效的工作能力。在许多应用中,PEMFC通常与高升压DC-DC功率转换器耦合,这不仅提供有效的功率转换,而且还提供高度调节的输出电压。由于PEMFC电力系统的无线性,传统的线性控制器(例如比例积分(PI)的应用没有成功驱动系统以精确地在足够的功率点中运行。因此,本文提出了一种坚固的非线性积分快速终端滑动模式控制(IFTSMC),其旨在提高PEMFC产生的电能质量;此外,设计并实现了数字滤波器,以平滑来自IFTSMC的抖动效果的信号。通过Lyapunov分析证明了IFTSMC的稳定证明。所提出的控制方案专为实验闭环系统而设计,该系统由HelioCentric Hy-Expert™FC-50W,MicroLabbox DSPACE DS1202,升压DC-DC电源转换器和可编程直流电源组成。使用PI控制器的比较结果表明,使用所提出的算法可以实现响应时间的减少96%;在其中,可以通过应用数字滤波器来消除高达91%的抖动现象。

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