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A nonlinear observer for instantaneous internal combustion engine crankshaft torque and active torque smoothing control using a crankshaft-mounted electric motor.

机译:非线性观测器,用于瞬时内燃机曲轴扭矩和使用安装在曲轴上的电动机进行的主动扭矩平滑控制。

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This dissertation presents a physics-based crankshaft torque observer for use with an internal combustion engine. The observer is based on a unique and efficient feedforward method for estimating instantaneous cylinder pressure in response to the control inputs applied by the operator or electronic engine controller. The observer further utilizes closed loop feedback of measured crankshaft motion states to force convergence of the crankshaft torque and motion state estimates to their actual values. In support of the development of the crankshaft torque observer, the dissertation also presents a real time, high fidelity, wide bandwidth internal combustion engine model.; The observer developed in this dissertation is applied to the problem of active control of crankshaft torque by means of a crankshaft-mounted electric machine. Specifically, a field oriented induction machine is used as a combined starter and alternator, with additional utility as a high frequency, independently controlled torque source suitable for active control of vibration.
机译:本文提出了一种用于内燃机的基于物理的曲轴扭矩观测器。观察者基于一种独特而有效的前馈方法,用于响应操作员或电子发动机控制器施加的控制输入来估算瞬时气缸压力。观察者还利用测得的曲轴运动状态的闭环反馈来迫使曲轴扭矩和运动状态估计收敛到其实际值。为了支持曲轴扭矩观测器的发展,本文还提出了一种实时,高保真,宽带的内燃机模型。本文所开发的观察者通过安装在曲轴上的电机被应用于主动控制曲轴扭矩的问题。具体而言,将磁场定向感应电机用作起动机和交流发电机的组合,另外还具有适用于主动控制振动的高频独立控制转矩源的功能。

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