Soft-landing control of low-energy solenoid valve actuators

J. V. Dam, B. Gysen, E. Lomonova, M. Dhaens
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引用次数: 6

Abstract

An automotive, fluid-control solenoid valve is composed of an electromagnetic reluctance actuator and a near-constant-force spring. Its motion profile is characterized by short closed-to-open transition times which demand fast switching, while valve lifetime improves by minimizing the impact velocity, i.e. a soft landing. In this paper, a cascaded position- and current-feedback control is designed and implemented on nonlinear, axisymmetric magnetostatic finite element simulations of a low-energy solenoid valve actuator. By applying the cascaded control, actuator performance is improved considerably, as a soft landing, a timely actuation, and an increased energy-efficient device have been obtained.
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低能量电磁阀执行器软着陆控制
一种汽车流体控制电磁阀由电磁磁阻执行器和近恒力弹簧组成。其运动轮廓的特点是关闭到打开的过渡时间短,需要快速切换,而阀门寿命通过最小化冲击速度(即软着陆)来提高。本文针对低能电磁阀执行器的非线性轴对称静磁有限元仿真,设计并实现了位置和电流级联反馈控制。通过采用级联控制,执行器的性能得到了很大的改善,实现了软着陆、及时驱动和提高了能效。
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