首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Experimental Characterization and Gray-Box Modeling of Spool-Type Automotive Variable-Force-Solenoid Valves With Circular Flow Ports and Notches
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Experimental Characterization and Gray-Box Modeling of Spool-Type Automotive Variable-Force-Solenoid Valves With Circular Flow Ports and Notches

机译:带圆形流口和槽口的滑阀式汽车变力电磁阀的实验表征和灰箱建模

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摘要

In automatic transmission design, electronic control techniques have been adopted through proportional variable-force-solenoid valves, which typically consist of spool-type valves (Christenson, W. A., 2000, SAE Technical Paper Series, 2000-01-0116). This paper presents an experimental investigation and neural network modeling of the fluid force and flow rate for a spool-type hydraulic valve with symmetrically distributed circular ports. Through extensive data analysis, general trends of fluid force and flow rate are derived as functions of pressure drop and valve opening. To further reveal the insights of the spool valve fluid field, equivalent jet angle and discharge coefficient are calculated from the measurements, based on the lumped parameter models. By incorporating physical knowledge with nondimensional artificial neural networks (NDANN), gray-box NDANN-based hydraulic valve system models are also developed through the use of equivalent jet angle and discharge coefficient. The gray-box NDANN models calculate fluid force and flow rate as well as the intermediate variables with useful design implications. The network training and testing demonstrate that the gray-box NDANN fluid field estimators can accurately capture the relationship between the key geometry parameters and discharge coefficient/jet angle. The gray-box NDANN maintains the nondimensional network configuration, and thus possesses good scalability with respect to the geometry parameters and key operating conditions. All of these features make the gray-box NDANN fluid field estimator a valuable tool for hydraulic system design.
机译:在自动变速器设计中,已经通过比例可变力电磁阀采用了电子控制技术,该阀通常由滑阀式阀组成(Christenson,W. A.,2000,SAE Technical Paper Series,2000-01-0116)。本文介绍了具有对称分布的圆形端口的滑阀式液压阀的流体力和流量的实验研究和神经网络建模。通过广泛的数据分析,得出流体力和流量的总体趋势是压降和阀门开度的函数。为了进一步揭示滑阀流体场的见解,基于集总参数模型,从测量值中计算出等效的喷射角和排放系数。通过将物理知识与无量纲人工神经网络(NDANN)相结合,还通过使用等效射流角和排放系数来开发基于灰盒NDANN的液压阀系统模型。灰色框的NDANN模型计算流体力和流速以及中间变量,这些变量对设计很有用。网络训练和测试表明,灰色方框NDANN流场估计器可以准确地捕获关键几何参数与排放系数/喷射角之间的关系。灰色框NDANN保留了无量纲的网络配置,因此在几何参数和关键操作条件方面具有良好的可伸缩性。所有这些功能使灰盒NDANN流场估计器成为液压系统设计的重要工具。

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