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A Feedfordward Adaptive Controller to Reduce the Imaging Time of Large-Sized Biological Samples with a SPM-Based Multiprobe Station

机译:一个采用基于SPM的多探针站减少大型生物样品成像时间的前馈自适应控制器

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摘要

The time required to image large samples is an important limiting factor in SPM-based systems. In multiprobe setups, especially when working with biological samples, this drawback can make impossible to conduct certain experiments. In this work, we present a feedfordward controller based on bang-bang and adaptive controls. The controls are based in the difference between the maximum speeds that can be used for imaging depending on the flatness of the sample zone. Topographic images of Escherichia coli bacteria samples were acquired using the implemented controllers. Results show that to go faster in the flat zones, rather than using a constant scanning speed for the whole image, speeds up the imaging process of large samples by up to a 4× factor.
机译:在基于SPM的系统中,对大型样本进行成像所需的时间是一个重要的限制因素。在多探针设置中,尤其是在处理生物样品时,此缺点可能导致无法进行某些实验。在这项工作中,我们提出了一种基于爆炸和自适应控制的前馈控制器。控件基于可用于成像的最大速度之间的差异,具体取决于样品区域的平坦度。使用已实现的控制器获取大肠杆菌细菌样品的地形图。结果表明,在平坦区域中扫描速度更快,而不是对整个图像使用恒定的扫描速度,可将大样本的成像过程加快多达4倍。

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