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Conception of an indirectly controlled servo valve for IC engine valve position control

机译:IC发动机阀门位置控制的间接控制伺服阀的概念

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The exhaust emissions legislation for motor vehicles with combustion engines is complicating the manufacturing of environmental yet powerful engines more than ever before. Common approaches towards solving this problem from manufacturer side are downsizing, hybridization and the development of electric drives. The subject of this project is the development of an innovative mechatronic control unit as replacement for the camshaft driven valve train of common combustion engines. The systems aim is a contribution to the progression of the development of modern combustion engines satisfying current demands in terms of economy and efficiency. To accomplish this aim, the ???Full Variable Valve Train??? (FVVT) utilizes an indirectly controlled servo valve, controlling the position of the engine valves fully independently. The advantage of the indirect system control is an enhanced robustness against interference influences. Further, the physical dimensions of the system become smaller, which is a prerequisite in order to implement the system into conventional combustion engines. This paper outlines the basic principles of the system introducing all required components, followed by the layout of the indirectly controlled mechatronic engine valve controller using mathematical fundamentals and fluid mechanics.
机译:与燃烧发动机的机动车的废气排放立法比以往任何时候都更加复杂于环境但强大的发动机的制造。解决制造商方面解决这个问题的常见方法是缩小,杂交和电动驱动的发展。该项目的主题是开发创新的机电控制单元作为凸轮轴驱动阀门的换燃动发动机的换乘器。该系统目的是对现代燃烧发动机的发展进展的贡献,满足经济和效率方面的当前需求。为了完成这个目标,全变量阀门列车??? (FVVT)利用间接控制的伺服阀,完全独立地控制发动机阀门的位置。间接系统控制的优点是增强了对干扰影响的鲁棒性。此外,系统的物理尺寸变得更小,这是为了将系统实施到传统的燃烧发动机中的先决条件。本文概述了系统引入所有所需组件的基本原理,然后使用数学基本原理和流体力学布局的间接控制的机电发动机阀控制器。

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