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Adaptive feedforward control of an electro-hydraulic variable valve actuator for internal combustion engines

机译:内燃机电液可变气门执行器的自适应前馈控制

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Electro-hydraulic valve actuators capable of variable valve timing, duration and lift offer potential benefits for significantly improving engine performance. A model-based adaptive feedforward control strategy was developed to improve the accuracy of valve opening timing control with the presence of time-varying valve delay. A discrete-time adaptive estimation algorithm was employed to estimate the system supply pressure, which is the leading factor of the valve opening delay. To make the online estimation feasible, a linear time-invariant model was obtained based on previously developed mathematical model. The valve opening delay determined by the estimated supply pressure was further used for the feedforward control to track the desired valve opening timing. Both the open-loop and closed-loop control schemes with adaptive feedforward were studied in this paper. The discrete-time adaptive parameter estimation algorithm along with the developed control strategies were verified on the test bench under transient operational conditions. The parameter estimation converges in 6 engine cycles with a steady-state mean relative estimation error of 7.1% and the tracking error of valve opening timing is kept within 1 crank angle degree using combined feedforward and feedback control.
机译:具有可变气门正时,持续时间和升程的电动液压气门执行器具有潜在的优势,可显着改善发动机性能。开发了基于模型的自适应前馈控制策略,以在存在时变阀延迟的情况下提高开阀正时控制的精度。采用离散时间自适应估计算法来估计系统供应压力,这是阀门打开延迟的主要因素。为了使在线估计可行,在先前开发的数学模型的基础上获得了线性时不变模型。由估计的供气压力确定的阀打开延迟进一步用于前馈控制,以跟踪所需的阀打开正时。本文研究了具有自适应前馈的开环和闭环控制方案。在瞬态运行条件下,在测试台上验证了离散时间自适应参数估计算法以及已开发的控制策略。参数估计在6个发动机循环中收敛,稳态平均相对估计误差为7.1%,并且使用前馈和反馈控制相结合,将气门开启正时的跟踪误差保持在1个曲柄角范围内。

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