Title :
Image Acquisition and Processing for Beam Profile Diagnostic Applications at Taiwan Photon Source
Author :
Chih-Yu Liao ; Chun-Yi Wu ; Yung-Sen Cheng ; Chang-Hor Kuo ; Kuo-Hwa Hu ; Kuo-Tung Hsu
Author_Institution :
Nat. Synchrotron Radiat. Res. Center, Hsinchu, Taiwan
Abstract :
For beam-diagnostic applications of synchrotron light facility at Taiwan Photon Source (TPS), the design and implementation of a system for image acquisition and processing is in progress. The optical system comprises a screen, lens and lighting system. A CCD camera with Gigabit Ethernet interface (GigE Vision) will be a standard device for image acquisition, to be undertaken with an EPICS (Experimental Physics and Industrial Control System) via a process variables (PVs) channel, analysis of the properties is made with a Mat lab tool to evaluate the beam profile (sigma), beam-size position and tilt angle etc. Various fitting strategies that affect the analysis results were discussed in this paper. The computer-simulated beam profiles with varied background noise and conditions are used to evaluate the duration of computing and to estimate the fitting errors.
Keywords :
CCD image sensors; image processing; light sources; physics computing; synchrotrons; CCD camera; EPICS; GigE Vision; Matlab tool; PVs channel; TPS; Taiwan photon source; beam profile diagnostic applications; beam-size position; computer-simulated beam profiles; experimental physics and industrial control system; fitting error estimation; gigabit Ethernet interface; image acquisition; image processing; lens; lighting system; optical system; process variable channel; screen; synchrotron light facility; tilt angle; varied background noise; Cameras; Fitting; Graphical user interfaces; MATLAB; Method of moments; Noise measurement; Structural beams; Beam profile; Fitting strategies; Image acquisition; Image processing; Synchrotron facility;
Conference_Titel :
Computer, Consumer and Control (IS3C), 2014 International Symposium on
Conference_Location :
Taichung
DOI :
10.1109/IS3C.2014.22