首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Design and implementation of a real-time power management strategy for a parallel hybrid electric bus
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Design and implementation of a real-time power management strategy for a parallel hybrid electric bus

机译:并联混合动力公交车实时电源管理策略的设计与实现

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A real-time energy management strategy derived from an equivalent consumption minimization strategy for a parallel hybrid electric bus is introduced. Although an equivalent consumption minimization strategy is a near-optimal control strategy for the power management problems of hybrid electric vehicles, the computation cost and the driveability requirements are still barriers for it to be directly implemented on real-time controllers. This paper analyses the controller characteristics of the equivalent consumption minimization strategy based on the Willans line model for an internal-combustion engine and an electric motor. A two-step method is proposed to simplify and approximate the standard equivalent consumption minimization strategy controller. The strategy for the proposed controller, which is called the Willans line-equivalent consumption minimization strategy, can reduce the computation cost of optimization and can guarantee near-optimum fuel economy, while improving the vehicle driveability. The proposed controller is then validated by offline simulation and an onboard bench test. A backward simulation is conducted to test the fuel economy performance of the controller simplified from the two steps, together with dynamic programming and an equivalent consumption minimization strategy based on look-up tables. Then the controller is tuned by a high-fidelity forward simulation to explore the trade-off between the fuel economy and the driveability. Finally, a bench test with real powertrain components is presented to illustrate the effectiveness of the proposed methodology.
机译:引入了一种实时能源管理策略,该策略是从并行混合动力电动客车的等效能耗最小化策略得出的。尽管等效功耗最小化策略是混合动力汽车动力管理问题的近乎最优的控制策略,但其直接在实时控制器上实现的计算成本和可驾驶性要求仍然是障碍。本文基于威兰线模型,分析了内燃机和电动机的等效消耗最小化策略的控制器特性。提出了一种两步法来简化和近似标准等效消耗最小化策略控制器。提出的控制器策略称为Willans线等效消耗最小化策略,可以减少优化的计算成本,并可以保证接近最佳的燃油经济性,同时提高车辆的驾驶性能。然后,通过离线仿真和机载台式测试验证所提出的控制器。进行向后仿真以测试从两个步骤简化的控制器的燃油经济性,并结合动态编程和基于查找表的等效消耗最小化策略。然后,通过高保真正向仿真对控制器进行调整,以探索燃油经济性和驾驶性能之间的权衡。最后,提出了具有实际动力总成组件的台架试验,以说明所提出方法的有效性。

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