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Modelling and reduction techniques for studies of integrated hybrid vehicle systems

机译:用于研究混合动力汽车系统的建模和归约技术

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Models of integrated vehicle systems are essential for designing hybrid vehicles by means of simulation-based optimization. Given the complexity of hybrid vehicle systems, designing is a time consuming process that requires the evaluation of a large number of different design configurations. Modelling and simulation can significantly reduce the design time through efficient design evaluations and reduced number of prototypes built. This work presents the development and reduction of an integrated hybrid vehicle model composed of an engine, drivetrain, hydraulics and vehicle dynamics subsystems. For model development the bond graph formulation is used because it facilitates the integration of component/subsystem models in different energy domains, supports hierarchical modelling and allows straightforward manipulation of the model. The model is configured for a medium size military truck, and implemented in the 20SIM modelling and simulation environment. After developing the model, an energy-based model reduction methodology is applied in order to generate a reduced vehicle model that provides more design insight. The generated reduced system model for the hybrid truck (compared to the full model) produces almost identical predictions, has almost half the size and calculates the system response 2.5 times faster. This computationally efficient reduced model can be used for vehicle design studies to further reduce the development time.
机译:集成车辆系统的模型对于通过基于仿真的优化设计混合动力车辆至关重要。考虑到混合动力汽车系统的复杂性,设计是一个耗时的过程,需要评估大量不同的设计配置。通过有效的设计评估和减少的原型数量,建模和仿真可以显着减少设计时间。这项工作提出了一种综合混合动力汽车模型的开发和简化,该模型由发动机,动力传动系统,液压系统和车辆动力学子系统组成。对于模型开发,使用了键图公式,因为它可以促进不同能量域中组件/子系统模型的集成,支持分层建模并允许对模型进行直接操作。该模型配置用于中型军用卡车,并在20SIM建模和仿真环境中实现。开发完模型后,将应用基于能量的模型简化方法,以生成简化的车辆模型,从而提供更多的设计见解。为混合动力卡车生成的简化系统模型(与完整模型相比)产生几乎相同的预测,尺寸几乎减小一半,并且系统响应速度快2.5倍。这种计算效率高的简化模型可用于车辆设计研究,以进一步减少开发时间。

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