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Absolute stability of fuel cell-super capacitor hybrid power source using Lure Lyapunov formulation for load variations

机译:燃料电池超级电容混合动力源的绝对稳定性使用Lure Lyapunov配方进行负载变化

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Fuel Cells have emerged as one the most efficient energy conversion devices which convert chemical energy into electricity. It is a common practice to use supercapacitor or battery with a fuel cell to compensate for a high instantaneous power requirement during transients in applications such as hybrid electric vehicle, smart grids etc. This paper presents a non-linear controller design method for a fuel cell-supercapacitor hybrid structure. We identify the Lure form of the dynamic model of fuel cell-supercapacitor hybrid power source. A class of control laws is proposed to ensure the absolute stability of the system. The feedback control law satisfies the necessary and sufficient conditions for stability which are established using a Lure type Lyapunov function. This method offers more degrees of freedom in choosing controller parameters hence providing more flexibility in controller design. The performance of the proposed control scheme is tested via simulations.
机译:燃料电池已成为最有效的能量转换装置,将化学能转化为电力。使用超级电容器或电池用燃料电池使用超级电容器或电池来补偿在混合动力电动车辆,智能电网等的应用中的瞬态期间补偿高瞬时功率要求。本文提出了一种用于燃料电池的非线性控制器设计方法-Supercapacitor混合结构。我们识别燃料电池超级电容器混合动力电源动态模型的诱饵形式。提出了一类控制法,以确保系统的绝对稳定性。反馈控制定律满足了使用Lure型Lyapunov功能建立的稳定性的必要和充分条件。该方法在选择控制器参数方面提供了更多程度的自由度,从而在控制器设计中提供了更大的灵活性。通过仿真测试所提出的控制方案的性能。

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