This paper presents the design of an internal reference model-based optimal linear quadratic Gaussian (LQG) controller for the lateral positioning of a piezoelectric tube actuator (PTA) used in an atomic force microscope (AFM). In this control design, internal modeling of the reference signal and system error are considered. As a result, the steady-state tracking error is minimized. In addition to the LQG controller, a vibration compensator is incorporated with the plant to suppress the vibration of the PTA at the resonance frequency. It achieves a high closed-loop bandwidth and significant damping of the resonant mode of the PTA, which enables a reference triangular signal to be tracked. Comparison of performance of the optimal LQG controller augmented with a vibration compensator and a PI controller demonstrates that the proposed controller shows significant improvements over the existing AFM PI controller.
Journal article
Tracking of triangular reference signals using LQG controllers for lateral positioning of an AFM scanner stage
IEEE/ASME Transactions on Mechatronics, Vol.19(4), pp.1105-1114
2014
Metrics
120 Record Views
UN Sustainable Development Goals (SDGs)
This output has contributed to the advancement of the following goals:
Source: InCites
Abstract
Details
- Title
- Tracking of triangular reference signals using LQG controllers for lateral positioning of an AFM scanner stage
- Creators
- H Habibullah - University of New South WalesH R Pota - University of New South WalesI R Petersen - University of New South WalesM S Rana - University of New South Wales
- Publication Details
- IEEE/ASME Transactions on Mechatronics, Vol.19(4), pp.1105-1114
- Identifiers
- 4457; 991012820898602368
- Academic Unit
- School of Environment, Science and Engineering; Faculty of Science and Engineering
- Resource Type
- Journal article