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首页> 外文期刊>International Journal of Fluid Power >MODELLING AN ELECTRO-HYDRAULIC POPPET VALVE
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MODELLING AN ELECTRO-HYDRAULIC POPPET VALVE

机译:建模电动液压止回阀

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This paper develops the dynamic modelling of a novel two-stage bidirectional poppet valve and proposes a simplified model that is more suitable for control purposes. The dynamic nonlinear mathematical model of this Electro-Hydraulic Poppet Valve (EHPV) is based on the analysis of the interactions among its three internal systems: the mechanical, hydraulic, and electromagnetic system. A discussion on the employed experimental methodology is included along with the validation of this model. When the pressure differential across the valve is sufficiently high and does not vary considerably, the model for this valve can be simplified substantially. More specifically, the EHPV can be modelled as a linear second order system with a static input nonlinearity. This nonlinearity is realized from the valve's steady state characteristics. The advantage of this separation between valve dynamics and nonlinearities is that an inverse linearisation approach (to cancel the nonlinearity) can be used to facilitate the control task for the valve.
机译:本文开发了新型两级双向提升阀的动力学模型,并提出了一种更适合控制目的的简化模型。该电动液压提升阀(EHPV)的动态非线性数学模型基于对其三个内部系统(机械,液压和电磁系统)之间相互作用的分析。关于所采用的实验方法的讨论也包括该模型的验证。当阀两端的压差足够高并且变化不大时,可以大大简化该阀的模型。更具体地说,EHPV可以建模为具有静态输入非线性的线性二阶系统。这种非线性是通过阀门的稳态特性实现的。阀动力学和非线性之间的这种分离的优点在于,可以使用逆线性化方法(以消除非线性)来简化阀的控制任务。

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