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Research on the electro-hydraulic variable valve actuation system based on a three-way proportional reducing valve

机译:基于三通比例减压阀的电动液压可变阀致动系统的研究

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摘要

As the internal combustion engine moves into the 21st century, fully flexible valve actuation systems are being proposed as an enabling technology for advanced internal combustion engine concepts. Electro-hydraulic valve actuator systems are being considered as a potential variable valve technology. Compared to the servo control system, the system using a proportional valve has the advantages of low price, high anti-pollution ability and high reliability. Our research focuses on exploring the dynamic characteristic of the electro-hydraulic variable valve system, which is based on three-way proportional reducing valve. In this paper, the structure and working principles of the system are described. The dynamic mathematical model of the system is derived. From the analysis of a linearized model and dynamic simulation, it is demonstrated that the system will be stable only if the proportional reducing valve has a positive opening. Some structural factors that affect the system’s dynamic characteristics, such as input signal, the stiffness of the return spring and the pre-tightening force of the return spring, are studied using AMESim. The experimental results coincide with the theoretical and simulated analyses. Further study shows that the dynamic response can be improved effectively by adopting closed-loop control of valve lift.
机译:随着内燃机进入21世纪,人们提出了完全灵活的气门致动系统,作为先进内燃机概念的一项使能技术。电动液压阀执行器系统被认为是一种潜在的可变阀技术。与伺服控制系统相比,采用比例阀的系统价格低廉,抗污染能力强,可靠性高。我们的研究重点是探索基于三通比例减压阀的电动液压可变阀系统的动态特性。本文介绍了该系统的结构和工作原理。推导了系统的动态数学模型。通过对线性模型的分析和动态仿真,证明了只有比例减压阀的开度为正时,系统才会稳定。使用AMESim研究了一些影响系统动态特性的结构因素,例如输入信号,复位弹簧的刚度和复位弹簧的预紧力。实验结果与理论分析和模拟分析相吻合。进一步的研究表明,采用气门升程的闭环控制可以有效地改善动态响应。

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