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Life-cycle cost sensitivity to battery-pack voltage of an HEV

机译:HEV的电池组电压的生命周期成本敏感性

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A detailed component performance, ratings, and cost study was conducted on series and parallel hybrid electric vehicle (HEV) configurations for several battery pack and main electric traction motor voltages while meeting stringent Partnership for a New Generation of Vehicles (PNGV) power delivery requirements. A computer simulation calculated maximum current and voltage for each component as well as power and fuel consumption. These values defined the peak power ratings for each HEV drive system's electric components: batteries, battery cables, boost converter, generator, rectifier, motor, and inverter. To identify a superior configuration or voltage level, life cycle costs were calculated based on the components required to execute simulated drive schedules. These life cycle costs include the initial manufacturing cost of components, fuel cost, and battery replacement cost over the vehicle life.
机译:在串联和平行的混合动力电动车(HEV)配置中进行了详细的组件性能,评级和成本研究,用于几个电池组和主电动牵引电动机电压,同时满足新一代车辆(PNGV)电力输送要求的严格伙伴关系。计算机仿真计算每个部件的最大电流和电压以及电源和燃料消耗。这些值定义了每个HEV驱动系统电气元件的峰值电力额定值:电池,电池电缆,升压转换器,发电机,整流器,电机和逆变器。为了识别卓越的配置或电压电平,基于执行模拟驱动时间表所需的组件来计算生命周期成本。这些生命周期的成本包括初始制造成本,燃料成本和车辆寿命的电池更换成本。

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