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Optimized Single-Stage Power-Split Hydraulic Hybrid City Bus

机译:优化的单级动力分配液压混合动力城市客车

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Power-split architecture is, in theory, an excellent drive train in city bus applications because it combines the advantages of series (control flexibility) and parallel (high-efficiency power transfer) architectures. However, the power split also increases the complexity of the drive train with more component choices and control degrees of freedom that, if not properly optimized, would result in significant power loss. The hydraulic hybrid drive train has the disadvantages of the low speed limit of the hydraulic pump/motor unit and the low energy density of the hydraulic accumulator. An extensive optimization study has been done to ensure the hydraulic hybrid city bus drive train runs at optimal conditions. This study analyzes all twelve basic power-split configurations before any component or control strategy optimization is done. One input coupled configuration is found suitable for use in a power-split hydraulic hybrid city bus.
机译:从理论上讲,功率分割架构是城市公交车应用中的出色传动系统,因为它结合了串联(控制灵活性)和并行(高效功率传输)架构的优点。但是,功率分配还会增加零部件选择和控制自由度,从而增加传动系统的复杂性,如果不进行适当的优化,则会导致明显的功率损耗。液压混合动力传动系具有液压泵/马达单元的低速极限和液压蓄能器的低能量密度的缺点。已经进行了广泛的优化研究,以确保液压混合动力城市客车传动系统在最佳条件下运行。在完成任何组件或控制策略优化之前,本研究分析了所有十二种基本功率分配配置。发现一种输入耦合配置适合用于动力分配液压混合动力城市客车。

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