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MODELING AND CONTROLS OF A FUEL DELIVERY SYSTEM WITH DUAL RECIRCULATION LINES FOR A PEM FUEL CELL SYSTEM

机译:PEM燃料电池系统具有双循环线的燃料输送系统的建模与控制

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A fuel delivery system with dual recirculation lines is investigated in this paper, which can reuse the exhausted gas from the outlet of anode flow channel. In the automotive application, the fuel delivery system regulates the hydrogen pressure and flow rate from the tank to the anode flow channel that change dynamically with load. The control objectives of fuel cell stack require that a slight pressure difference between the anode and cathode be maintained to prevent the damage of the membrane. In addition, the unconsumed hydrogen is circulated to a supply line by the recirculation lines.rnThe fuel delivery system analyzed in this paper consists of two supply lines and two recirculation lines. The supply line with a low pressure regulator accounts for the supply of fuel at relatively low load demands. The other supply line with a flow controller starts to provide additional fuel with controllable flow rate at high load demands. The recirculation line with an ejector allows for mixing the unconsumed hydrogen with the supplied fuel. The other recirculation line with a blower is used to improve the controllability of the recirculation flow rate.rnAnalysis of the fuel delivery system with dual recirculation lines is carried out by modeling and simulating an integrated system, where the components are modeled involving the dynamic characteristics. The major components of fuel delivery and recirculation system are an ejector, a blower, and a pressure regulator. In addition, the linearization of the integrated system is expressed in the approach of state equations to form the control problem of the system. Then the linear controllers are designed based on the decentralized proportional and integral control, and the state feed-back control. The systems with the different controllers are simulated at different operating points to evaluate their tracking performance by comparing the dynamic response curves.
机译:本文研究了一种具有双再循环管路的燃料输送系统,该系统可以重复利用阳极流道出口的废气。在汽车应用中,燃料输送系统调节从罐到阳极流道的氢压力和流速,氢压力和流速随负载而动态变化。燃料电池堆的控制目标要求在阳极和阴极之间保持微小的压力差,以防止膜的损坏。另外,未消耗的氢气通过再循环管线循环到供给管线。本文分析的燃料输送系统由两条供给管线和两条再循环管线组成。具有低压调节器的供应管线负责在相对较低的负载需求下提供燃料。带有流量控制器的另一条供应管线开始在高负载需求下以可控制的流量提供额外的燃料。带喷射器的再循环管线可将未消耗的氢气与所供应的燃料混合。另一条带有鼓风机的再循环管线用于改善再循环流量的可控性。通过对集成系统进行建模和仿真,对带有双再循环管线的燃油输送系统进行分析,其中对涉及动态特性的组件进行建模。燃油输送和再循环系统的主要组件是喷射器,鼓风机和压力调节器。另外,集成系统的线性化以状态方程的方式表示,从而形成系统的控制问题。然后,基于分散的比例和积分控制以及状态反馈控制来设计线性控制器。具有不同控制器的系统在不同的工作点进行仿真,以通过比较动态响应曲线来评估其跟踪性能。

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