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Torsional system parameter identification of internal combustion engines under normal operation

机译:正常运行状态下内燃机的扭转系统参数识别

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For internal combustion engines, lumped-mass models of the crankshaft system are frequently used for torque estimation in control and diagnostic applications, such as cylinder balancing and misfire detection. Due to inherent model uncertainties and changing system dynamics it may be necessary to adapt the model parameters from time to time in order to preserve the required model accuracy. In this paper a frequency-domain method for on-line identification of the parameters describing the torsional dynamics of internal combustion engines is presented. In the proposed method, the engine is excited by adjusting the cylinder-wise injected fuel amounts, and the measured responses in torsional vibration frequency components are used for parameter estimation. As the fuel-injection adjustments can be determined in such a way that the net indicated torque is unaffected, the identification can be performed on-line without disturbing normal engine operation. The procedure can be applied to estimate the torsional stiffness and damping parameters of the flexible coupling connecting the engine and the load. In addition, the gains which describe how the cylinder-wise fuel injections affect the amplitudes of relevant torsional vibratory frequency components are obtained. The parameter identification method is successfully evaluated in full-scale engine tests on a 6.6 MW six-cylinder medium-speed common-rail diesel engine.
机译:对于内燃机,曲轴系统的集总质量模型经常用于控制和诊断应用程序中的扭矩估计,例如气缸平衡和失火检测。由于固有的模型不确定性和不断变化的系统动力学,可能有必要不时调整模型参数,以保持所需的模型精度。本文提出了一种频域方法,用于在线识别描述内燃机扭转动力学的参数。在所提出的方法中,通过调节汽缸方向喷射的燃料量来激励发动机,并且将在扭转振动频率分量中测得的响应用于参数估计。由于可以以不影响最终指示扭矩的方式确定燃油喷射调节,因此可以在线进行识别而不会干扰正常的发动机运行。该程序可用于估计连接发动机和负载的挠性联轴器的扭转刚度和阻尼参数。另外,获得了描述气缸式燃料喷射如何影响相关的扭转振动频率分量的幅度的增益。参数识别方法已在6.6兆瓦六缸中速共轨柴油发动机的全面发动机测试中成功评估。

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