首页> 外文会议>Industrial Electronics, 2009. IECON '09 >Second order sliding mode control of the moto-compressor of a PEM fuel cell air feeding system, with experimental validation
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Second order sliding mode control of the moto-compressor of a PEM fuel cell air feeding system, with experimental validation

机译:PEM燃料电池供气系统的摩托车压缩机的二阶滑模控制,并经过实验验证

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Fuel cells are electrochemical devices that convert the chemical energy of a gaseous fuel directly into electricity. They are widely regarded as potential future stationary and mobile power sources. The response of a fuel cell system depends on the air and hydrogen feed, flow and pressure regulation, and, heat and water management. In this paper, the study is concentrated on the air subsystem that feeds the fuel cell cathode with oxygen. An IP control, a RST regulator and a higher order sliding mode control, super-twisting algorithm, with variable gains, have been designed and validated experimentally to control the air flow of the moto-compressor system, composed of a DC motor driving a volumetric compressor of type piston, designed to feed a 500 W fuel cell with air. Experimental results show better performance with the sliding mode control, especially when dealing with a delayed air flow sensor response.
机译:燃料电池是电化学装置,可将气态燃料的化学能直接转化为电能。它们被广泛认为是未来潜在的固定和移动电源。燃料电池系统的响应取决于空气和氢气的进料,流量和压力调节以及热量和水的管理。在本文中,研究集中在为氧气提供燃料电池阴极的空气子系统上。已设计并通过实验验证了IP控制器,RST调节器和具有可变增益的高阶滑模控制超扭曲算法,并进行了实验验证,以控制由电机驱动的容积式压缩机组成的摩托车压缩机系统的气流。活塞式压缩机,设计用于向500 W的燃料电池供气。实验结果表明,在滑模控制下性能更好,特别是在处理延迟的气流传感器响应时。

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