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Swinging Bus Operation of Inverters for Fuel Cell Applications With Small DC-Link Capacitance

机译:具有小型直流母线电容的燃料电池应用逆变器的摆式总线操作

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摘要

For reliability reasons, the employment of small film capacitors instead of electrolytic ones is an interesting alternative for the dc-link in single-phase inverters for fuel cell applications. Due to the low capacitance that can be accomplished at an acceptable cost using this technology, there are large low-frequency voltage fluctuations (100/120 Hz and harmonics) in the dc-link caused by the double-frequency power transfer. By allowing these variations in the bus, the capacitor bank absorbs the current ripple from the inverter to avoid detrimental oscillations in the fuel cell. Traditional control strategies for inverters are usually designed to operate with nearly constant input voltage and are not able to effectively handle large (e.g., $>10%$) low-frequency input voltage fluctuations. This paper introduces the analysis of a swinging bus in the context of fuel cell standalone applications (i.e., voltage–source inverters) and proposes a nonlinear control approach to operate inverters with very large input voltage swing: the natural switching surface (NSS). Under the proposed scheme, the inverter presents excellent dynamic and steady-state characteristics, even at moderate switching frequency (e.g., 3.6 kHz). In order to illustrate the superior performance of the NSS, a comparison to a proportional-resonant (PR) controller is performed. Unlike the linear compensator, the NSS is able to reject the large bus voltage oscillations and achieve high-quality output voltage with low total harmonic distortion (THD). Simulation and experimental results are provided to illustrate the behavior of the swinging bus and to validate the NSS control scheme under the proposed demanding operating conditions.
机译:出于可靠性原因,对于燃料电池应用的单相逆变器中的直流母线,采用小薄膜电容器代替电解电容器是一种有趣的选择。由于使用该技术可以以可接受的成本实现低电容,因此双频功率传输导致直流链路中存在较大的低频电压波动(100/120 Hz和谐波)。通过允许总线中的这些变化,电容器组吸收了来自逆变器的电流纹波,从而避免了燃料电池中的有害振荡。传统的逆变器控制策略通常设计为在几乎恒定的输入电压下运行,并且不能有效处理较大的电压(例如, $> 10%$ )低频输入电压波动。本文介绍了在燃料电池独立应用(即电压源逆变器)的情况下对摆动母线的分析,并提出了一种非线性控制方法来操作输入电压摆幅非常大的逆变器:自然开关表面(NSS)。在提出的方案下,即使在中等的开关频率(例如3.6kHz)下,该逆变器也具有出色的动态和稳态特性。为了说明NSS的卓越性能,需要与比例共振(PR)控制器进行比较。与线性补偿器不同,NSS能够抑制较大的总线电压振荡,并以较低的总谐波失真(THD)实现高质量的输出电压。仿真和实验结果表明了摆式客车的性能,并在提出的苛刻工况下验证了NSS控制方案。

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