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MODEL-BASED CONTROL FOR DIESEL ENGINE START-STOP OPERATIONS WITH A BELTED STARTER/ALTERNATOR

机译:基于模型的柴油发动机启动 - 带腰带起动器/交流发电机的控制

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The coupling of an internal combustion engine with a starter/alternator is one of the most easily realizable hybrid electric vehicle configurations to achieve significant fuel economy savings in urban driving. A successful implementation of the starter alternator technology includes controlling the electric motor to start and stop the engine quickly and smoothly, without compromising the vehicle noise, vibration and harshness (NVH) signature. The issue becomes more critical in the case of Diesel hybrids, as the peak compression torque is much larger than in automotive spark ignition engines. This paper presents a model-based approach in control design for engine start/stop operations with a belted starter/alternator. Starting from previous modeling and experimental results, a nonlinear model of a belted starter/alternator coupled with a Diesel engine is developed for control algorithm development. With the introduction of a feed-forward control action proportional to the instantaneous engine torque, the starter/alternator controller is capable of consistently reducing the large torque fluctuations during the engine start. With this feedforward control action, the engine start control problem can be translated into a simpler disturbance rejection problem, given a prescribed speed trajectory. This facilitates a linearization of the complex nonlinear model to produce a control-oriented model on which feedback control can be designed. Using the control-oriented model thus developed, different linear control designs have been developed and compared. Further, a robustness study is conducted to evaluate the effect of noise and uncertainties common to such systems. The final results are tested on the original nonlinear truth model, demonstrating the capability of starting and stopping the engine with very limited torque and speed fluctuations.
机译:内燃机与起动器/交流发电机的耦合是最易于可实现的混合动力汽车配置之一,以实现城市驾驶中的显着燃油经济性。成功实施启动器交流发电机技术包括控制电动机快速且平稳地启动和停止发动机,而不会影响车辆噪声,振动和苛刻(NVH)签名。在柴油混合动力车的情况下,该问题变得更关键,因为峰值压缩扭矩远大于汽车火花点火发动机。本文介绍了一种基于模型的方法,可控制设计,用于带有腰带起动器/交流发电机的发动机启动/停止操作。从以前的建模和实验结果开始,开发了一种与柴油发动机联接的带式启动器/交流发动机的非线性模型,用于控制算法开发。随着引入与瞬时发动机扭矩成比例的前馈控制动作,起动器/交流发电机控制器能够一致地减小发动机启动期间的大扭矩波动。通过这种前馈控制动作,给定规定的速度轨迹,发动机启动控制问题可以转换为更简单的扰动抑制问题。这有助于复杂非线性模型的线性化,以产生可控制的控制模型,可以设计反馈控制。使用如此开发的面向控制的模型,已经开发了不同的线性控制设计并进行比较。此外,进行稳健性研究以评估噪声和不确定性对这些系统共同的影响。最终结果在原始的非线性真理模型上进行了测试,证明了具有非常有限的扭矩和速度波动的发动机的启动能力。

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