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Development of a new fully flexible hydraulic variable valve actuation system for engines using rotary spool valves

机译:使用旋转阀芯阀门发动机新型全柔性液压可变阀致动系统的开发

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摘要

In this paper, a new hydraulic variable valve actuation (VVA) system is proposed and designed. The VVA system can significantly improve the engine performance in terms of the power density, volumetric efficiency, emission, and fuel consumption. In this system, each engine valve is actuated by a hydraulic cylinder which is charged and discharged using two rotary spool valves. The rotary spool valves are rotated by the engine crankshaft while their phases are controlled by hydraulic or electric phase shifters. Similar to camless valvetrains, the new engine valve system is capable of flexible engine valve timing and lift at any engine speed without the drawbacks of existing camless valvetrains including high control complexity, low reliability, and slow actuator response. The mathematical model of the system is derived and verified by comparing simulation and experimental results. Two feedback controllers are designed and implemented for precise valve opening and closing timing and valve lift control. Experiments are performed to validate the mathematical model and evaluate the proposed system's performance. The results show excellent system repeatability and controllability at different operating conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的液压可变阀致动(VVA)系统。 VVA系统可以在功率密度,体积效率,发射和燃料消耗方面显着提高发动机性能。在该系统中,每个发动机阀由液压缸致动,该液压缸用两个旋转阀芯阀充电和放电。旋转阀芯阀由发动机曲轴旋转,同时它们的相由液压或电移相器控制。类似于棉条阀门,新型发动机阀门系统能够柔性发动机阀门正时和以任何发动机速度升降,而无需现有的透视阀门,包括高控制复杂性,低可靠性和慢速执行器响应。通过比较模拟和实验结果来导出和验证系统的数学模型。为精确的阀门开启和关闭时序和阀升机控制设计并实施了两个反馈控制器。进行实验以验证数学模型并评估所提出的系统性能。结果显示出优异的系统可重复性和不同操作条件的可控性。 (c)2017 Elsevier Ltd.保留所有权利。

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