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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Cyclic torque imbalance detection in gasoline engines using a uniform second-order sliding mode observer
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Cyclic torque imbalance detection in gasoline engines using a uniform second-order sliding mode observer

机译:使用均匀的二阶滑动模式观察器汽油发动机中的循环扭矩不平衡检测

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摘要

Engine torque imbalance is a wide-ranging problem which is caused due to variance of the combustion mixture in the engine cylinder. In this research work, cyclic torque imbalance detection is carried out by formulating a uniform second-order sliding mode observer using the First Principle-based Engine Model. Oscillations in the crankshaft angular speed were modeled in the novel First Principle-based Engine Model, which were suppressed in the Mean Value Engine Models. Cyclic torque imbalance is simulated at multiple instances by varying the injected fuel mass. Estimation of the net piston force is carried out for cyclic torque imbalance detection using rotational dynamics of the engine model. This force is treated as unknown input to the torque production subsystem of the model. Cyclic torque imbalance detection is validated using the GT-Power engine model. Variations in the cyclic torque were detected proximate to actual values which demonstrated validity of the proposed technique.
机译:发动机扭矩不平衡是由于发动机圆筒中的燃烧混合物的方差而导致的宽范围问题。 在该研究工作中,通过使用第一原理的发动机模型配制均匀的二阶滑动模式观察器来执行循环扭矩不平衡检测。 曲轴角度速度的振动在新颖的第一原理基础发动机模型中建模,在平均值发动机模型中被抑制。 通过改变注入的燃料质量,在多个情况下模拟循环扭矩不平衡。 使用发动机模型的旋转动力学进行循环扭矩不平衡检测进行净活塞力的估计。 该力被视为模型扭矩生产子系统的未知输入。 使用GT-Power Engine模型验证循环扭矩不平衡检测。 靠近循环扭矩的变化靠近实际值,该值表明了所提出的技术的有效性。

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