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Real-Time Energy Management Strategy for Fuel Cell Range Extender Vehicles Based on Nonlinear Control

机译:基于非线性控制的燃料电池增程器车辆实时能量管理策略

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摘要

Energy management strategy (EMS) is very crucial for the hybrid power system of fuel cell range extender vehicles (FCREV) with respect to improving vehicle energy consumption economy. The objective of this article is to formulate a real-time EMS to efficiently regulate the energy flow of the hybrid power system under complex driving conditions. First, a nonlinear control system is developed to calculate the reference output current of the proton exchange membrane FC for energy management, and the theoretical stability of the nonlinear control system is proven by using the Lyapunov function. Then, a physics-based model of FCREVs is established in the Simulink environment, which considers the energy losses from the braking and the mechanical transmission system. Finally, fuzzy logic control is proposed as a benchmark to compare the performance of the proposed EMS in a combined driving cycle testing condition. The simulation results show that the proposed EMS has the potential for prolonging the lifespan of FC and achieves optimal energy consumption efficiency of FC, as well as improving the energy consumption economy of FCREVs.
机译:能源管理策略(EMS)对于燃料电池增程器车辆(FCREV)的混合动力系统在提高车辆能源消耗经济性方面至关重要。本文的目的是制定一种实时EMS,以有效地调节复杂驾驶条件下混合动力系统的能量流。首先,开发了一种非线性控制系统来计算用于能量管理的质子交换膜FC的参考输出电流,并使用Lyapunov函数证明了该非线性控制系统的理论稳定性。然后,在Simulink环境中建立了基于物理的FCREV模型,该模型考虑了制动和机械传动系统的能量损失。最后,提出了模糊逻辑控制作为基准,以在组合的驾驶循环测试条件下比较所提出的EMS的性能。仿真结果表明,所提出的环境管理系统具有延长燃料电池寿命的潜力,可以实现燃料电池的最佳能耗效率,并提高燃料电池汽车的能耗经济性。

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