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Adaptive disturbance rejection in an optical trap

机译:光阱中的自适应干扰抑制

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This article presents a method for characterizing the system dynamics of a trapped particle in real-time and designing a controller to minimize disturbances to the particle's position. Specifically, adaptive system identification is used to determine the trap characteristics and the actuator transfer function describing the mirror voltage to trap position path. Using an internal model control scheme combined with a filtered-x least-mean-square algorithm, adaptive control was used to create a controller that minimizes a frequency weighted mean-squared-error. The dynamics associated with multiple particle sizes and materials were experimentally determined under different power levels, each case resulting in different system dynamics and demonstrating positive control results. The adaptive system identification and the controller presented automate the process of system identification and control design, enabling the automation of optical trap controller design.
机译:本文提出了一种方法,用于实时表征被捕集的粒子的系统动力学,并设计一种控制器以最大程度地减少对粒子位置的干扰。具体地,自适应系统识别用于确定阱特征和致动器传递函数,该致动器传递函数描述了到阱位置路径的镜电压。通过将内部模型控制方案与过滤的x最小均方算法结合使用,自适应控制可用于创建最小化频率加权均方误差的控制器。在不同功率水平下,通过实验确定了与多种粒径和材料相关的动力学,每种情况导致不同的系统动力学,并显示出积极的控制效果。自适应系统识别和控制器介绍使系统识别和控制设计过程自动化,从而使光阱控制器设计自动化。

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