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Modeling and 1D control of a non contact magnetic actuation platform at the air/liquid interface for micrometer scale applications

机译:在气/液界面处的非接触式电磁致动平台的建模和一维控制,用于微米级应用

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Non contact magnetic actuation inside liquids or in ambient environments has gained a large interest over the last few years. A large range of micrometer size particles are controlled using this principle. However little consideration has been made to air/liquid interface, despite the interesting properties of this environment (good repeatability due to the small adhesion forces, and low viscous effects that enable to reach large velocities). This work aims at providing models to perform both the conception and the control of these new devices. Both an accurate analytical model for the conception, and a simplified one that can be easily invertible in real time for the control are proposed. Different assumptions based on the small scale of the particle are discussed to obtain the simplified model. The validity of the approach is analysed using a 1D trajectory control experiment based on the simplified model of the system. This work provides the basic understanding for the future developments of magnetic actuation systems at the air/liquid interface for micrometer scale applications.
机译:在过去的几年中,液体内部或周围环境中的非接触式磁致动引起了人们的极大兴趣。使用此原理可控制大范围的微米级颗粒。然而,尽管这种环境具有令人感兴趣的特性(由于较小的粘附力,良好的可重复性,以及能够达到较大速度的低粘性效应),但对空气/液体界面却未作任何考虑。这项工作旨在提供模型来执行这些新设备的概念和控制。提出了一种用于该概念的精确分析模型,以及一种可以轻松地实时实时反转以进行控制的简化模型。讨论了基于小尺度粒子的不同假设,以获得简化模型。基于系统简化模型的一维轨迹控制实验分析了该方法的有效性。这项工作为在微米级应用的气/液界面处的电磁致动系统的未来发展提供了基本的了解。

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