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Mechatronic Model and Experimental Validation of a Pneumatic Servo-Solenoid Valve

机译:气动伺服电磁阀的机电模型和实验验证

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This paper deals with a method for static and dynamic modeling of a three-way pneumatic proportional valve actuated by means of a proportional solenoid, which can be applied in robust design, condition monitoring, and development of advanced control strategies. Test-beds for the experimental identification of the main physical parameters of the valve are described along with the proposed experimental methods. A mechatronic dynamic model of the valve is then presented, which considers the servo-solenoid as the electromagnetic subsystem, the moving parts of the valve as the mechanical subsystem, and the fluid parts for flow-rate control as the pneumatic subsystem. Finally, the proposed mechatronic dynamic model is validated by comparing the experimental and simulated diagrams for adsorbed current, spool position, and instantaneous flow-rate.
机译:本文研究了一种通过比例电磁阀驱动的三通气动比例阀的静态和动态建模方法,该方法可用于鲁棒性设计,状态监测和高级控制策略的开发。描述了用于实验识别阀门主要物理参数的试验台以及提出的实验方法。然后,提出了阀的机电动力学模型,该模型将伺服电磁阀视为电磁子系统,将阀的运动部件视为机械子系统,并将用于流量控制的流体部件视为气动子系统。最后,通过比较吸附电流,阀芯位置和瞬时流量的实验图和仿真图,验证了所提出的机电动力学模型。

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    Author(s):Massimo SorliDepartment of Mechanics, Polytechnic of Turin, Corso Duca degli Abruzzi, 10129 Torino, ItalyGiorgio FiglioliniDiMSAT, University of Cassino, Via G. Di Biasio 43, 03043 Cassino, ItalyAndrea AlmondoDepartment of Mechanics, Polytechnic of Turin, Corso Duca degli Abruzzi, 10129 Torino, Italy;

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