DocumentCode
153420
Title
The Robustness of a New 3D CAPTCHA
Author
Qi Ye ; Youbin Chen ; Bin Zhu
Author_Institution
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
fYear
2014
fDate
7-10 April 2014
Firstpage
319
Lastpage
323
Abstract
CAPTCHA is a standard security technology to tell humans and computers and the most widely used method is text based scheme. As many text schemes have been broken, 3D CAPTCHAs have emerged as one of the latest one. In this paper, we study the robustness of 3D text-based CAPTCHA adopted by Ku6 which is a leading website providing videos in China and provide the first analysis of 3D hollow CAPTCHA. The security of this CAPTCHA scheme relies on a novel segmentation resistance mechanism, which combines Crowding Character Together (CCT) strategy and side surfaces which form the 3D visual effect of characters and lead to a promising usability even under strong overlapping between characters. However, by exploiting the unique features of the 3D characters in hollow font, i.e. parallel boundaries, the different stroke width of side faces and front faces and relationships between them, we propose a technique that segments connected characters apart and repairs some overlapped apart. The success segmentation rate is 70%. With minor changes, our attack program works well on its two variations, the segmentation rate is 75% and 85% respectively.
Keywords
cryptography; image coding; image segmentation; 3D CAPTCHA scheme; CCT strategy; Completely Automated Public Turing test to tell Computers and Humans Apart; attack program; crowding character together; side surfaces; standard security technology; success segmentation rate; CAPTCHAs; Character recognition; Computers; Maintenance engineering; Robustness; Security; Three-dimensional displays; 3D; CAPTCHA; hollow font; security; segmentation; usability;
fLanguage
English
Publisher
ieee
Conference_Titel
Document Analysis Systems (DAS), 2014 11th IAPR International Workshop on
Conference_Location
Tours
Print_ISBN
978-1-4799-3243-6
Type
conf
DOI
10.1109/DAS.2014.31
Filename
6831021
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