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A combined steady state and dynamic model of a proton exchange membrane fuel cell for use in DG system simulation

机译:用于DG系统仿真的质子交换膜燃料电池稳态与动态组合模型。

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This paper proposes a combined steady state (SS) and dynamic model of a proton exchange membrane fuel cell (PEMFC) for use in distributed generation (DG) systems simulation. The SS fuel cell parameters associated with ohmic loss, activation overpotential and concentration over potential which are not easily accessible are estimated using a non-linear fitting of measured V-I fuel cell characteristics. Effect of fuel and air flow dynamics, electrical delay, and delay associated with fuel cell current reference feed back loop on the dynamics of the Nernst potential is modelled. The SS and dynamic models of the FC are then combined to establish a SIMULINK/SIMPOWER terminal model that can easily be interfaced in DG systems simulations. The model SS response is verified using voltage measurements taken by slowly varying the load (current). Simulation results, using SIMULINK/SIMPOWER, are then presented to demonstrate that the model works as desired both for SS and dynamic loads. To demonstrate its applicability in DG Systems simulations, the model is used in long time simulation of an example grid connected FC/Battery Hybrid power system.
机译:本文提出了质子交换膜燃料电池(PEMFC)的组合稳态(SS)和动态模型,用于分布式发电(DG)系统仿真。使用测量的V-I燃料电池特性的非线性拟合估计与欧姆损耗,激活超电势和浓度超电势相关的SS燃料电池参数,这些参数不易获得。模拟了燃料和空气流动动力学,电延迟以及与燃料电池电流参考反馈回路相关的延迟对能斯特电势动力学的影响。然后,将FC的SS模型和动态模型结合起来,以建立一个SIMULINK / SIMPOWER终端模型,可以轻松地将其连接到DG系统仿真中。通过缓慢改变负载(电流)进行电压测量,可以验证模型SS的响应。然后,使用SIMULINK / SIMPOWER给出了仿真结果,以证明该模型可以满足SS和动态载荷的要求。为了证明其在DG Systems仿真中的适用性,该模型用于示例并网连接的FC /电池混合动力系统的长时间仿真中。

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