Showing posts with label Hyun Jung Kim. Show all posts
Showing posts with label Hyun Jung Kim. Show all posts

Thursday, February 27, 2014

Abstract-High-speed terahertz imaging toward food quality inspection



Gyeongsik Ok, Kisang Park, Hyun Jung Kim, Hyang Sook Chun, and Sung-Wook Choi  
»View Author Affiliations
Applied Optics, Vol. 53, Issue 7, pp. 1406-1412 (2014)
http://dx.doi.org/10.1364/AO.53.001406
In contrast to conventional x-ray food inspection systems that have difficulty in detecting low-density materials, a terahertz imaging system can even identify insects and plastics embedded in a food matrix. A reflection-mode continuous-wave terahertz imaging system was therefore developed for application to food quality inspection, which requires fast, compact, and low-cost detection. High-speed operation of the terahertz imaging system was achieved through the use of a beam-steering tool. A reasonable compromise between the spatial resolution and the scan length of an aspheric f-theta scanning lens could be achieved by optimizing the lens parameters.
© 2014 Optical Society of America

Monday, February 17, 2014

Abstract-High-speed terahertz imaging toward food quality inspection


                         Gyeongsik Ok, Kisang Park, Hyun Jung Kim, Hyang Sook , and Sung-Wook Choi

received 12/06/2013; accepted 01/27/2014; posted 01/28/2014; Doc. ID 202672

http://www.opticsinfobase.org/ao/upcoming_pdf.cfm?id=202672

In contrast to conventional X-ray food inspection systems that have difficulty detecting low-density materials, a terahertz (THz) imaging system can even identify insects and plastics embedded in a food matrix. A reflection mode continuous-wave THz imaging system was therefore developed for application in food quality inspection, which requires fast, compact, and low-cost detection. High-speed operation of the THz imaging system was achieved through the use of a beam-steering tool. A reasonable compromise between the spatial resolution and the scan length of an aspheric f-theta scanning lens could be achieved by optimizing the lens parameters.