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Development and validation of a control strategy for a parallel hybrid (diesel-electric) powertrain.

机译:开发和验证并联混合动力(柴油-电动)动力总成的控制策略。

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The rise in powertrain complexity and the stringent performance requirements of a hybrid electric vehicle have elevated the role of its powertrain control strategy to considerable importance. Iterative modeling and simulation form an integral part of the control strategy design process and industry engineers rely on proprietary ''legacy'' models to rapidly develop and implement control strategies. However, others must initiate new algorithms and models in order to develop production-capable control systems. This thesis demonstrates the development and validation of a charge-sustaining control algorithm for a through-the-road parallel hybrid (diesel-electric) powertrain. Some approaches used in powertrain-level control of other similar vehicles have been adopted to incrementally develop this control strategy. The real-time performance of the control strategy has been analyzed through on-road and chassis dynamometer tests over standard drive cycles. Substantial quantitative improvements in overall performance over the stock vehicle, including better acceleration and fuel-economy have been achieved.
机译:动力总成系统复杂性的提高和混合动力汽车对性能的严格要求将其动力总成控制策略的作用提高到相当重要的位置。迭代建模和仿真是控制策略设计过程中不可或缺的一部分,行业工程师依靠专有的“传统”模型来快速开发和实施控制策略。但是,其他公司必须启动新的算法和模型才能开发具有生产能力的控制系统。本文论证了一种用于道路并行混合动力(柴油-电动)动力总成的电荷保持控制算法的开发和验证。已经采用了在其他类似车辆的动力总成水平控制中使用的一些方法来逐步开发此控制策略。该控制策略的实时性能已通过在标准行驶周期内进行的公路和底盘测功机测试进行了分析。与库存车辆相比,总体性能有了实质性的定量改进,包括更好的加速和燃油经济性。

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