Quiet Seating Control Design of an Electromagnetic Engine Valve Actuator

C. Tai, T. Tsao
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引用次数: 12

Abstract

The control of engine valve seating velocity has been identified to be crucial for the application of an electromagnetic valve (EMV) actuator for camless variable valve timing engine operations. Analysis shows that the EMV actuator becomes unstable when the engine valve is hold steady close to the seating position. As such, valve motion under open loop control is sensitive to disturbances and suffers poor repeatability. Therefore, closed-loop control is required to achieve desirable quiet-seating performance consistently. A linear plant model was constructed based on a gray-box approach that combines mathematical modeling and system identification. A controller was developed with H∞ loop-shaping method to stabilize the EMV actuator. The performance of this control design is demonstrated by experimental results. “Seating velocity” and “seating tail-length” are defined and used to evaluate the control system performance.
电磁发动机气门执行器的安静座椅控制设计
在无凸轮可变气门正时发动机运行中,发动机气门阀座速度的控制是电磁气门执行器应用的关键。分析表明,当发动机气门稳定保持在座椅位置附近时,EMV执行器变得不稳定。因此,在开环控制下的阀门运动对干扰很敏感,可重复性差。因此,需要闭环控制来实现理想的安静座椅性能。基于灰盒方法,将数学建模与系统辨识相结合,建立了线性植物模型。设计了一种采用H∞环整形方法的EMV执行器稳定控制器。实验结果证明了该控制设计的有效性。定义了“座位速度”和“座位尾长”,并使用它们来评价控制系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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