Testing System of Optical Head Spot Besed on Labview

Article Preview

Abstract:

According to the characteristics of the NVD optical head spot, designing the Virtual instrument testing system based on NI Image processor, denoising the optical head spot, extraction the spot target, calculation of the spot parameter. The spot definition will be better and have good performance after the software processing. The detection method has such advantages as easy to integrate the function of computer hardware and software, highly cost-effective, good reliability, certain versatility and expanding. It has the certain reference value on the similar characteristics study of optical-mechanical-electric system and project evaluation.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

32-35

Citation:

Online since:

December 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Tang guanqun: Comparison of Several Kinds of Laser Spot Center Location Algorithm, J. Journal of Beijing machinery industry, pp.61-64, 24(1), (2009).

Google Scholar

[2] Zhang aiping: Labview Entry and Virtual Instrument, M. Beijing Publishing House of Electronics Industry, (2004).

Google Scholar

[3] Guo yanqin and Lu xiangyang: Design of Virtual Oscillograph Based on Labview, J. Electronic Engineer, 32(4), (2008).

Google Scholar

[4] Yuan chunlan, Xiong zhonglong, Zhou xuehua, Peng xiaohui: Image Edge Detection Based on The Sober Operator, J. Sichuan nonferrous metal, pp.85-87, 39(1), (2009).

Google Scholar

[5] Wang wei, Cheng huaixin: Method Research of Light Spot Image Denoising Pretreatment, J. Laser technology, pp.54-57, 3(1), (2007).

Google Scholar

[6] G M Williams: GHz-rate single-photon-sensitive linear-mode APD receivers[C]/ SPIE, (2009).

DOI: 10.1117/12.810064

Google Scholar

[7] G M Williams, M A Compton, A S Hontington: High-speed photon counting with linear-mode APD receivers[C], SPIE, (2009).

DOI: 10.1117/12.817862

Google Scholar