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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Load Governor for Fuel Cell Oxygen Starvation Protection: A Robust Nonlinear Reference Governor Approach
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Load Governor for Fuel Cell Oxygen Starvation Protection: A Robust Nonlinear Reference Governor Approach

机译:用于燃料电池缺氧保护的负载调节器:鲁棒的非线性参考调节器方法

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The fuel cell oxygen starvation problem is addressed in this paper using a robust load governor. By regulating the current drawn from the fuel cell, the pointwise-in-time constraints on the oxygen excess ratio and on the oxygen mass inside the cathode are strictly enforced to protect the fuel cells from oxygen starvation. The load governor is designed using a nonlinear reference governor approach. Parameter uncertainties such as those due to imperfect controls of temperature and humidity are handled in the load governor design using a novel approach based on sensitivity functions. Simulation results are included to demonstrate the effectiveness of the proposed scheme. The results are compared with those of a linear filter which has been proposed in the prior literature to achieve similar goals.
机译:本文使用坚固的负载调节器解决了燃料电池缺氧问题。通过调节从燃料电池汲取的电流,可以严格限制氧气过量比和阴极内部氧气质量的时间点限制,以保护燃料电池免于缺氧。负载调速器是使用非线性参考调速器方法设计的。在负载调节器设计中,可以使用基于灵敏度函数的新颖方法来处理参数不确定性,例如由于温度和湿度控制不完善而导致的不确定性。仿真结果包括在内,以证明所提方案的有效性。将结果与现有文献中为达到类似目的而提出的线性滤波器的结果进行比较。

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