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Modeling and parameters identification of high pressure fuel cell back-pressure valve

机译:高压燃料电池背压阀的建模与参数辨识

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The reactant pressure of the fuel cell stack is crucial to the efficiency and lifespan of high pressure fuel cell engine. Plenty of researches have done to achieve precisely pressure control, and taking electronic throttle (ET) as back-pressure valve to control pressure is one of the most ideal techniques. In this paper, a detailed nonlinear dynamic model of back-pressure valve is provided firstly. Then, several algorithms are designed to estimate the unknown parameters in the model. Finally, the previous model and identified parameters are verified based on the xPC Target technique. The simulations show that the model and identified parameters provided in this paper have certain reliability and are important to the development of high-performance fuel cell engine controller.
机译:燃料电池堆的反应物压力对于高压燃料电池发动机的效率和寿命至关重要。为了实现精确的压力控制,已经进行了大量的研究,采用电子节气门(ET)作为背压阀来控制压力是最理想的技术之一。本文首先提供了一个详细的背压阀非线性动力学模型。然后,设计了几种算法来估计模型中的未知参数。最后,基于xPC Target技术验证了先前的模型和已识别的参数。仿真表明,本文提供的模型和确定的参数具有一定的可靠性,对高性能燃料电池发动机控制器的开发具有重要意义。

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