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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Optimal Transient Control Trajectories in Diesel-Electric Systems-Part Ⅰ: Modeling, Problem Formulation, and Engine Properties
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Optimal Transient Control Trajectories in Diesel-Electric Systems-Part Ⅰ: Modeling, Problem Formulation, and Engine Properties

机译:柴油-电气系统中的最佳瞬态控制轨迹-第一部分:建模,问题表述和发动机特性

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摘要

A nonlinear four state-three input mean value engine model (MVEMj, incorporating the important turbocharger dynamics, is used to study optimal control of a diesel-electric powertrain during transients. The optimization is conducted for the two criteria, minimum time and fuel, where both engine speed and engine power are considered free variables in the optimization. First, steps from idle to a target power are studied and for steps to higher powers the controls for both criteria follow a similar structure, dictated by the maximum torque line and the smoke-limiter. The end operating point, and how it is approached is, however, different. Then, the power transients are extended to driving missions, defined as, that a certain power has to be met as well as a certain energy has to be produced. This is done both with fixed output profiles and with the output power being a free variable. The time optimal control follows the fixed output profile even when the output power is free. These solutions are found to be almost fuel optimal despite being substantially faster than the minimum fuel solution with variable output power. The discussed control strategies are also seen to hold for sequences of power and energy steps.
机译:非线性四态三输入均值发动机模型(MVEMj)结合了重要的涡轮增压器动力学特性,用于研究瞬态过程中柴电动力总成的最佳控制。针对两个标准(最短时间和燃料)进行了优化。在优化过程中,发动机转速和发动机功率均被视为自由变量,首先,研究从怠速到目标功率的阶跃,对于更高功率的阶跃,两个标准的控制都遵循相似的结构,这取决于最大扭矩线和排烟量。 -limiter。但是,最终工作点及其实现方法不同,然后,功率瞬变扩展到驾驶任务,定义为既要满足一定的功率又必须满足一定的能量这既可以通过固定输出曲线来实现,也可以将输出功率作为自由变量来进行,即使输出功率是自由的,时间最优控制也遵循固定的输出曲线。尽管离子速度比可变输出功率下的最小燃料溶液快得多,但已发现离子几乎是最佳燃料。还可以看到,所讨论的控制策略适用于功率和能量阶跃序列。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第2期|021601.1-021601.11|共11页
  • 作者单位

    Division of Vehicular Systems, Department of Electrical Engineering, Linkoeping University, Linkoeping SE-581 83, Sweden;

    Division of Vehicular Systems, Department of Electrical Engineering, Linkoeping University, Linkoeping SE-581 83, Sweden;

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