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Wavelet-transform-based Power Management Of Hybrid Vehicles With Multiple On-board Energy Sources Including Fuel Cell, Battery And Ultracapacitor

机译:基于小波变换的混合动力汽车燃料管理,包括燃料电池,电池和超级电容器等多种车载能源

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摘要

A wavelet-transform-based strategy is proposed for the power management of hybrid electric vehicles (HEV) with multiple on-board energy sources and energy storage systems including a battery, a fuel cell, and an ultra-capacitor. The proposed wavelet-transform algorithm is capable of identifying the high frequency transient and real time power demand of the HEV, and allocating power components with different frequency contents to corresponding sources to achieve an optimal power management control algorithm. By using the wavelet decomposition algorithm, a proper combination can be achieved with a properly sized ultra-capacitor dealing with the chaotic high-frequency components of the total power demand, while the fuel cell and battery deal with the low and medium frequency power demand. Thus the system efficiency and life expectancy can be greatly extended. Simulation and experimental results validated the effectiveness of wavelet-transform-based power management algorithm.
机译:提出了一种基于小波变换的策略,用于混合动力汽车(HEV)的功率管理,该混合动力汽车具有多个车载能源和包括电池,燃料电池和超级电容器的储能系统。提出的小波变换算法能够识别混合动力汽车的高频瞬态和实时功率需求,并将具有不同频率含量的功率分量分配给相应的源,以实现最优的功率管理控制算法。通过使用小波分解算法,可以使用适当大小的超级电容器来实现适当的组合,该超级电容器可以处理总功率需求中的混沌高频分量,而燃料电池和电池则可以处理中低频功率需求。因此,可以大大延长系统效率和预期寿命。仿真和实验结果验证了基于小波变换的电源管理算法的有效性。

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