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UKF-based estimation of indicated torque for IC engines utilizing nonlinear two-inertia model

机译:基于UKF的非线性二惯性模型估算内燃机扭矩

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The estimation of the indicated torque for internal combustion (IC) engines is important for control, diagnosis and performance evaluation. If adequate sensors were available for pressure measurement in each cylinder, the indicated torque estimation would be easier. Those sensors, however, cannot be utilized generally from cost and installation space viewpoints. Hence, this paper considers an indicated torque estimation method utilizing only the crank-shaft angle information, which can be obtained even for commercial cars, instead of pressure sensors. The use of the crankshaft angle causes a problem that an unexpected vibration contaminating the angle information deteriorates the torque estimation accuracy because vibration frequency is relatively close to the combustion cycle. Thus, the engine torque estimation can be formulated as an observer design under model uncertainty and nonlinearity. In addition, this observer design problem is classified into an unknown input observer design because the engine torque or the combustion pressure as input to the engine system cannot be measured directly. To solve the design problem, this paper proposes the introduction of a nonlinear two-inertia model to catch the unexpected vibration, and an UKF-based I-type disturbance observer to estimate the indicated torque and the system state. The effectiveness of the proposed method is verified through experiments.
机译:内燃机(IC)发动机的指示扭矩的估计对于控制,诊断和性能评估很重要。如果有足够的传感器可用于每个气缸中的压力测量,则指示的扭矩估算将更容易。然而,从成本和安装空间的角度来看,这些传感器通常不能被利用。因此,本文考虑仅利用曲轴角信息的指示扭矩估计方法,该方法甚至对于商用车也可以代替压力传感器获得。曲轴角度的使用引起了这样的问题,即,由于振动频率相对接近燃烧循环,所以污染角度信息的意外振动降低了扭矩估计精度。因此,在模型不确定性和非线性情况下,发动机扭矩估计可以公式化为观察者设计。另外,由于不能直接测量作为输入到发动机系统的发动机扭矩或燃烧压力,因此该观察器设计问题被分类为未知的输入观察器设计。为了解决设计问题,本文提出了一种非线性的二惯性模型来捕获意外振动,并提出了一种基于UKF的I型干扰观测器来估计指示转矩和系统状态。通过实验验证了该方法的有效性。

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