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首页> 外文期刊>International Journal of Powertrains >Development and experimental validation of a low-frequency dynamic model for a Hybrid Electric Vehicle
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Development and experimental validation of a low-frequency dynamic model for a Hybrid Electric Vehicle

机译:混合动力电动汽车低频动态模型的开发与实验验证

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This paper describes the development and experimental validation of a high-fidelity Hybrid Electric Vehicle (HEV) simulator that enables testing and calibration of energy management and driveline control strategies. The model is capable of predicting longitudinal vehicle responses that affect energy consumption and drivability in the low-to-mid frequency region (up to 10 Hz). The simulator focuses primarily on the drivetrain dynamics, while the dynamics of the actuators are represented by simplified models. The vehicle simulator is validated by a number of experiments that include electric only, engine only and hybrid operating conditions. The test vehicle has a through-the-road parallel hybrid architecture that utilises a dual electric machine configuration. Experimental results confirm that important driveline phenomena such as shunt, shuffle, torque holes and other transient disturbances related to operating mode changes are accurately predicted.
机译:本文介绍了一种高保真混合动力电动汽车(HEV)模拟器的开发和实验验证,该模拟器可以对能源管理和传动系统控制策略进行测试和校准。该模型能够预测车辆的纵向响应,这些响应会影响中低频率区域(最高10 Hz)中的能耗和驾驶性能。模拟器主要关注动力传动系统动力学,而致动器的动力学则由简化模型表示。车辆模拟器通过许多实验验证,包括纯电动,纯发动机和混合动力运行条件。测试车辆具有采用双电机配置的公路并行混合架构。实验结果证实,可以准确预测重要的动力传动系统现象,例如分流,乱序,扭矩孔以及与运行模式变化相关的其他瞬态干扰。

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