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An Adaptive Control Method for Ros-Drill Cellular Microinjector with Low-Resolution Encoder

机译:具有低分辨率编码器的Ros钻孔细胞显微注射器的自适应控制方法

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摘要

A novel control methodology which uses a low-resolution encoder is presented for a cellular microinjection technology called the Ros-Drill (rotationally oscillating drill). It is developed primarily for ICSI (intracytoplasmic sperm injection) operations, with the objective of generating a desired oscillatory motion at the tip of a micro glass pipette. It is an inexpensive setup, which creates high-frequency (higher than 500 Hz) and small-amplitude (around 0.2 deg) rotational oscillations at the tip of an injection pipette. These rotational oscillations enable the pipette to drill into cell membranes with minimum biological damage. Such a motion control procedure presents no particular difficulty when it uses sufficiently precise motion sensors. However, size, costs, and accessibility of technology to the hardware components severely constrain the sensory capabilities. Consequently, the control mission and the trajectory tracking are adversely affected. This paper presents two contributions: (a) a dedicated novel adaptive feedback control method to achieve a satisfactory trajectory tracking capability. We demonstrate via experiments that the tracking of the harmonic rotational motion is achieved with desirable fidelity; (b) some important analytical features and related observations associated with the controlled harmonic motion which is created by the low-resolution feedback control structure.
机译:针对细胞微注射技术,提出了一种使用低分辨率编码器的新颖控制方法,该技术称为Ros-Drill(旋转振荡钻)。它主要针对ICSI(胞浆内精子注射)操作而开发,目的是在微型玻璃移液器的尖端产生所需的振荡运动。这是一种廉价的设置,可在注射移液器尖端产生高频(高于500 Hz)和小振幅(约0.2度)的旋转振荡。这些旋转振荡使移液器能够以最小的生物学损伤钻入细胞膜。当这种运动控制程序使用足够精确的运动传感器时,就没有特别的困难。但是,尺寸,成本和技术对硬件组件的可访问性严重限制了感官功能。因此,控制任务和轨迹跟踪受到不利影响。本文提出了两个贡献:(a)一种专用的新型自适应反馈控制方法,可以实现令人满意的轨迹跟踪能力。我们通过实验证明,以期望的保真度实现了对谐波旋转运动的跟踪。 (b)与由低分辨率反馈控制结构产生的受控谐波运动相关的一些重要分析特征和相关观察。

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