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Feedback Control and 3D Motion of Heterogeneous Janus Particles

机译:异质Janus粒子的反馈控制和3D运动

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This paper presents 2D feedback control and open loop 3D trajectories of heterogeneous chemically catalyzing Janus particles. Self-actuated particles have enormous implications for both in vivo and in vitro environments, which make them a diverse resource for a variety of medical and assembly applications. Janus particles, consisting of cobalt and platinum hemispheres, can self-propel in hydrogen peroxide solutions due to platinum's catalyzation properties. These particles are directionally controlled using static magnetic fields produced from a triaxial approximate Helmholtz coil system. Since the magnetization direction of Janus particles is often heterogeneous, and thereby not consistent with the propulsion direction, this creates a unique opportunity to explore the motion effects of these particles under 2D feedback control and open loop 3D control. Using a modified closed loop controller, Janus particles with magnetization both closely aligned and greatly misaligned to the propulsion vectors, were instructed to perform complex trajectories. These trajectories were then compared between trials to measure both consistency and accuracy. The effects of increasing offset between the magnetization and propulsion vectors were also analyzed. The effects this heterogeneity had on 3D motion is also briefly discussed. It is our hope going forward to develop a 3D closed loop control system that can retroactively account for variations in the magnetization vector.
机译:本文介绍了非均质化学催化Janus粒子的2D反馈控制和开环3D轨迹。自驱动颗粒对于体内和体外环境都具有巨大的意义,这使其成为用于各种医疗和装配应用的多样化资源。由钴和铂半球组成的Janus颗粒由于铂的催化特性,可以在过氧化氢溶液中自推进。这些粒子是使用从三轴近似亥姆霍兹线圈系统产生的静磁场来定向控制的。由于Janus粒子的磁化方向通常是异质的,因此与推进方向不一致,因此这为探索这些粒子在2D反馈控制和开环3D控制下的运动效果提供了独特的机会。使用改进的闭环控制器,指示具有磁化强度的Janus粒子与推进矢量紧密对齐和严重错位,以执行复杂的轨迹。然后在试验之间比较这些轨迹,以测量一致性和准确性。还分析了增加磁化矢量和推进矢量之间的偏移量的影响。还简要讨论了这种异质性对3D运动的影响。我们希望开发一种3D闭环控制系统,该系统可以追溯性地考虑磁化矢量的变化。

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