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HILS-based design of integrative controller of parallel-series HEV

机译:基于HILS的并联HEV集成控制器设计

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The integrative controller is the core component of the parallel-series HEV (PSHEV). It realizes the power management and integrative control by running the control strategy and driving the actuators. In the conditional developing methods the controller is verified and validated by the road test. The developing period is long and the cost is expensive. Moreover, the road test can't be carried out before finishing the design and facture of the controller software and hardware, which can not meet the requirement of parallel design. So in this paper the HILS developing method is used in the design and validation of integrative controller of PSHEV. The research results indicate: the design scheme of parallel-series and control system and control strategy are correct and feasible. The developed integrative controller can realize the function of power management and integrative control and the performance is good. The design and validation work is simpler and easier to implement by using the HILS method and the research and development efficiency is encouraged. The research results are practical and significant for the design and rapid development of PSHEV integrative controller.
机译:集成控制器是并联系列混合动力汽车(PSHEV)的核心组件。通过运行控制策略并驱动执行器来实现电源管理和集成控制。在条件开发方法中,通过路试对控制器进行验证和确认。显影期长且成本昂贵。此外,在完成控制器软件和硬件的设计和制造之前不能进行路试,这不能满足并行设计的要求。因此,本文将HILS开发方法用于PSHEV集成控制器的设计和验证。研究结果表明:并联系统的设计方案和控制系统及控制策略是正确可行的。开发的集成控制器可以实现电源管理和集成控制的功能,性能良好。通过使用HILS方法,设计和验证工作变得更容易实现,并且鼓励了研发效率。该研究结果对PSHEV集成控制器的设计和快速开发具有实际意义。

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