Bazaei A, Yong Yuen K, Moheimani S O Reza
School of Electrical Engineering and Computer Science, The University of Newcastle, Callaghan, NSW 2308, Australia.
Rev Sci Instrum. 2012 Jun;83(6):063701. doi: 10.1063/1.4725525.
Tracking of triangular or sawtooth waveforms is a major difficulty for achieving high-speed operation in many scanning applications such as scanning probe microscopy. Such non-smooth waveforms contain high order harmonics of the scan frequency that can excite mechanical resonant modes of the positioning system, limiting the scan range and bandwidth. Hence, fast raster scanning often leads to image distortion. This paper proposes analysis and design methodologies for a nonlinear and smooth closed curve, known as Lissajous pattern, which allows much faster operations compared to the ordinary scan patterns. A simple closed-form measure is formulated for the image resolution of the Lissajous pattern. This enables us to systematically determine the scan parameters. Using internal model controllers (IMC), this non-raster scan method is implemented on a commercial atomic force microscope driven by a low resonance frequency positioning stage. To reduce the tracking errors due to actuator nonlinearities, higher order harmonic oscillators are included in the IMC controllers. This results in significant improvement compared to the traditional IMC method. It is shown that the proposed IMC controller achieves much better tracking performances compared to integral controllers when the noise rejection performances is a concern.
在许多扫描应用(如扫描探针显微镜)中,跟踪三角波形或锯齿波形是实现高速操作的主要困难。这种非平滑波形包含扫描频率的高阶谐波,会激发定位系统的机械共振模式,限制扫描范围和带宽。因此,快速光栅扫描常常会导致图像失真。本文提出了一种针对非线性平滑闭合曲线(即李萨如图形)的分析和设计方法,与普通扫描模式相比,该图形能实现更快的操作。针对李萨如图形的图像分辨率制定了一种简单的闭式度量。这使我们能够系统地确定扫描参数。使用内部模型控制器(IMC),这种非光栅扫描方法在由低共振频率定位台驱动的商用原子力显微镜上得以实现。为了减少由于执行器非线性导致的跟踪误差,IMC控制器中包含了高阶谐波振荡器。与传统的IMC方法相比,这带来了显著的改进。结果表明,当关注噪声抑制性能时,所提出的IMC控制器与积分控制器相比,实现了更好的跟踪性能。