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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Analysis Of The Interactions Between Indicated Andreciprocating Torques For Therndevelopment Of A Torsionalrnbehavior Model Of The Powertrain
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Analysis Of The Interactions Between Indicated Andreciprocating Torques For Therndevelopment Of A Torsionalrnbehavior Model Of The Powertrain

机译:动力总成扭力行为模型发展的指示与往复转矩相互作用分析

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Torque-based engine control systems usually employ a produced torque estimation feedback in order to verify that the strategy target torque has been met. Torque estimation can be performed using static maps describing the engine behavior or using models describing the existing relationships between signals measured on the engine and the indicated torque produced. Signals containing information on the combustion development, suitable for this purpose, are, among others, the ion-current signal, the vibration signals obtained from accelerometers mounted on the engine block, or the instantaneous engine speed fluctuations. This paper presents the development and the identification process of an engine-driveline torsional behavior model that enables indicated torque estimation from instantaneous engine speed measurement. Particular attention has been devoted to the interactions between indicated and reciprocating torques, and their effects over instantaneous engine speed fluctuations. Indicated and reciprocating torques produce, in fact, opposite excitations on the driveline that show opposite effects on the engine speed wave form: For low engine speed, usually indicated torque prevails, while the opposite applies for higher engine speed. In order to correctly estimate indicated torque from engine speed measurement, it is therefore necessary to correctly evaluate the reciprocating torque contribution. Reciprocating torque is usually described using a wave form as a function of crank angle, while its amplitude depends on the value of the reciprocating masses. As mentioned before, knowledge of the reciprocating masses is fundamental in order to obtain correct estimation of the indicated torque. The identification process that has been set up for the engine-driveline torsional model enables to evaluate the relationship between torques applied to the engine and the corresponding engine speed wave form even without knowing the value of the reciprocating masses. In addition, once this model has been set up, it is possible to estimate with high precision the value of the reciprocating masses. Particular attention has also been devoted to the feasibility of the application of the identified model onboard for torque estimation; for this reason, the model has been developed in a very simple form. The approach proved to be effective both on gasoline and diesel engines, both for engine mounted on a test cell and onboard, with different engine configurations. Examples of application are given for some of the configurations investigated.
机译:基于扭矩的发动机控制系统通常采用产生的扭矩估计反馈,以验证是否已达到策略目标扭矩。可以使用描述发动机性能的静态映射表或描述描述在发动机上测得的信号与所产生的指示转矩之间的现有关系的模型来执行转矩估算。包含适合于此目的的燃烧发展信息的信号尤其是离子电流信号,从安装在发动机缸体上的加速度计获得的振动信号或瞬时发动机转速波动。本文介绍了一种发动机动力传动系统扭转行为模型的开发和识别过程,该模型能够根据瞬时发动机转速测量结果进行指示扭矩估算。已特别注意指示扭矩和往复扭矩之间的相互作用,以及它们对瞬时发动机转速波动的影响。指示扭矩和往复扭矩实际上在传动系统上产生相反的激励,对发动机转速波形产生相反的影响:对于低发动机转速,通常以指示转矩为准,而相反情况则适用于较高发动机转速。为了从发动机转速测量值正确估计指示扭矩,因此必须正确评估往复扭矩贡献。往复扭矩通常使用波形作为曲柄角的函数来描述,而其幅度取决于往复质量的值。如前所述,对往复运动质量的了解对于获得对指示扭矩的正确估算至关重要。即使在不知道往复运动质量值的情况下,为发动机传动系统扭转模型建立的识别过程也可以评估施加到发动机的扭矩和相应的发动机转速波形之间的关系。此外,一旦建立了该模型,就可以高精度估算往复质量的值。还特别关注了在船上使用已确定的模型进行扭矩估算的可行性;因此,已经以非常简单的形式开发了模型。事实证明,该方法对汽油和柴油发动机都是有效的,无论是安装在测试单元上还是船上的发动机,都具有不同的发动机配置。给出了一些研究配置的应用示例。

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