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A new topology of fuel cell hybrid power source for efficient operation and high reliability

机译:新型燃料电池混合动力电源拓扑,可实现高效运行和高可靠性

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This paper analyzes a new fuel cell Hybrid Power Source (HPS) topology having the feature to mitigate the current ripple of the fuel cell inverter system. In the operation of the inverter system that is grid connected or supplies AC motors in vehicle application, the current ripple normally appears at the DC port of the fuel cell HPS. Consequently, if mitigation measures are not applied, this ripple is back propagated to the fuel cell stack. Other features of the proposed fuel cell HPS are the Maximum Power Point (MPP) tracking, high reliability in operation under sharp power pulses and improved energy efficiency in high power applications. This topology uses an inverter system directly powered from the appropriate fuel cell stack and a controlled buck current source as low power source used for ripple mitigation. The low frequency ripple mitigation is based on active control.The anti-ripple current is injected in HPS output node and this has the LF power spectrum almost the same with the inverter ripple. Consequently, the fuel cell current ripple is mitigated by the designed active control. The ripple mitigation performances are evaluated by indicators that are defined to measure the mitigation ratio of the low frequency harmonics. In this paper it is shown that good performances are obtained by using the hysteretic current control, but better if a dedicated nonlinear controller is used. Two ways to design the nonlinear control law are proposed. First is based on simulation trials that help to draw the characteristic of ripple mitigation ratio vs. fuel cell current ripple. The second is based on Fuzzy Logic Controller (FLC). The ripple factor is up to 1% in both cases.
机译:本文分析了一种新的燃料电池混合动力电源(HPS)拓扑,该拓扑具有减轻燃料电池逆变器系统的电流纹波的功能。在车辆应用中并网或为交流电动机供电的逆变器系统的运行中,电流纹波通常会出现在燃料电池HPS的直流端口上。因此,如果不采取缓解措施,则该波纹会反向传播至燃料电池堆。拟议的燃料电池HPS的其他功能包括最大功率点(MPP)跟踪,在尖锐的功率脉冲下运行时的高可靠性以及在大功率应用中提高的能源效率。该拓扑使用由适当的燃料电池堆直接供电的逆变器系统和受控的降压电流源作为用于降低纹波的低功率源。低频纹波缓解是基于主动控制的,向HPS输出节点注入了纹波电流,其低频功率谱与逆变器纹波几乎相同。因此,通过设计的主动控制可减轻燃料电池的电流纹波。纹波缓解性能通过指标进行评估,这些指标定义为测量低频谐波的缓解率。本文表明,通过使用滞环电流控制可以获得良好的性能,但是如果使用专用的非线性控制器则效果更好。提出了两种设计非线性控制律的方法。首先是基于模拟试验,有助于得出纹波缓解率与燃料电池电流纹波的关系。第二个基于模糊逻辑控制器(FLC)。在两种情况下,纹波系数均高达1%。

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