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Design and Performance Evaluation of an Electro-Hydraulic Camless Engine Valve Actuator for Future Vehicle Applications

机译:面向未来汽车应用的电液无凸轮发动机气门执行器的设计和性能评估

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摘要

This paper details the new design and dynamic simulation of an electro-hydraulic camless engine valve actuator (EH-CEVA) and experimental verification with lift position sensors. In general, camless engine technologies have been known for improving fuel efficiency, enhancing power output, and reducing emissions of internal combustion engines. Electro-hydraulic valve actuators are used to eliminate the camshaft of an existing internal combustion engines and used to control the valve timing and valve duration independently. This paper presents novel electro-hydraulic actuator design, dynamic simulations, and analysis based on design specifications required to satisfy the operation performances. An EH-CEVA has initially been designed and modeled by means of a powerful hydraulic simulation software, AMESim, which is useful for the dynamic simulations and analysis of hydraulic systems. Fundamental functions and performances of the EH-CEVA have been validated through comparisons with experimental results obtained in a prototype test bench.
机译:本文详细介绍了电动液压无凸轮发动机气门执行器(EH-CEVA)的新设计和动态仿真,以及带有升程位置传感器的实验验证。通常,已知无凸轮发动机技术用于提高燃料效率,提高功率输出并减少内燃机的排放。电动液压气门执行器用于消除现有内燃机的凸轮轴,并用于独立控制气门正时和气门持续时间。本文提出了新颖的电动液压执行器设计,动态仿真以及基于满足操作性能所需的设计规范的分析。 EH-CEVA最初是通过功能强大的液压仿真软件AMESim设计和建模的,该软件可用于液压系统的动态仿真和分析。通过与在原型测试台上获得的实验结果进行比较,已验证了EH-CEVA的基本功能和性能。

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