Abstract
With the development of the Internet and smart terminals, Quick Response (QR) code and its related applications become increasingly popular. Though there are plenty of advantages for the usage of QR code, but its security issue is always a problem that can not be overlooked. Aiming for embedding message into QR code, a Module Expansion (ME) based method is proposed in this paper. The core idea of ME is to expand a module to its neighbor if these two modules are in different colors. Experimental results show that (1) our capacity for embedding is about half of that for encoding of the same QR code, which is much higher comparing to the state-of-the-art methods, (2) for the QR codes of versions under 20, the average time cost for embedding and extraction is around 51 ms and 59 ms respectively, (3) the success ratio of message extraction under noise attack and print-and-scan process are both higher than 80%. The proposed method can be used in QR code applications such as the anti-counterfeiting for encoded message of a printed QR code, and others for which message sharing is needed.
This work is supported by the Scientific Research Project of Fujian University of Technology (GY-Z160130, GY-Z160138, GY-Z160066), the Natural Science Foundation of Fujian Province (2017J05098, 2017H0003, 2018Y3001), Project of Fujian Education Department Funds (JK2017029, JZ160461), Project of Fujian Provincial Education Bureau (JAT160328, JA15325) and Project of Science and Technology Development Center, Ministry of Education (2017A13025).
Access this chapter
Tax calculation will be finalised at checkout
Purchases are for personal use only
Similar content being viewed by others
References
Liu, S.-J., Zhang, J., Pan, J.-S., Weng, C.-J.: SVQR: a novel secure visual quick response code and its anti-counterfeiting solution. J. Inf. Hiding Multimedia Sig. Process. 8(5), 1132–1140 (2017)
Information technology - Automatic identification and data capture techniques - QR code 2005 bar code symbology specification, ISO/IEC 18004:2006 (2006)
Yao, H., Shin, D.: Towards preventing QR code based attacks on android phone using security warnings. In: Proceedings of the 8th ACM SIGSAC Symposium on Information, Computer and Communications Security, pp. 341–346. ACM (2013)
Goel, N., Sharma, A., Goswami, S.: A way to secure a QR code: SQR. In: International Conference on Computing, Communication and Automation, pp. 494–497 (2017)
Husny, H.-R.-M., Abdullah, N.-Y., Ismail, W.-H.-W., Nizar, N.-A.-N.-N.-A.: Encrypted QR code system. J. Comput. Technol. Creative Content 2(1), 82–92 (2017)
Barmawi, A.-M., Yulianto, F.-A.: Watermarking QR code. In: 2nd International Conference on Information Science and Security (ICISS), pp. 1–4. IEEE (2015)
Lin, P.-Y., Chen, Y.H.: High payload secret hiding technology for QR codes. Eurasip J. Image Video Process. 2017, 14 (2017)
Liu, S.-J., Zhang, J., Pan, J.-S., Weng, C.-J.: A novel information imbedding and recovering method for QR code based on module subdivision. J. Inf. Hiding Multimedia Sig. Process. 9(2), 515–522 (2018)
Erlangga, W., Barmawi, A.-M.: Increasing secret data hiding capacity in QR code using \(3\times 3\) subcells. In: International Workshop on Digital Watermarking, pp. 327–342. Springer (2016)
Xie, R., Hong, C., Zhu, S., Tao, D.: Anti-counterfeiting digital watermarking algorithm for printed QR barcode. Neurocomputing 167(C), 625–635(2015)
Weng, S.-W., Pan, J.-S., Deng, J.-H.: Invariability of remainder based reversible watermarking. J. Netw. Intell. 1(1), 16–22 (2016)
Author information
Authors and Affiliations
Corresponding author
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2019 Springer Nature Switzerland AG
About this paper
Cite this paper
Weng, CJ., Pan, JS., Liu, SJ., Wang, MJ. (2019). A Watermarking Method for Printed QR Code Based on Module Expansion. In: Pan, JS., Ito, A., Tsai, PW., Jain, L. (eds) Recent Advances in Intelligent Information Hiding and Multimedia Signal Processing. IIH-MSP 2018. Smart Innovation, Systems and Technologies, vol 109. Springer, Cham. https://doi.org/10.1007/978-3-030-03745-1_16
Download citation
DOI: https://doi.org/10.1007/978-3-030-03745-1_16
Published:
Publisher Name: Springer, Cham
Print ISBN: 978-3-030-03744-4
Online ISBN: 978-3-030-03745-1
eBook Packages: Intelligent Technologies and RoboticsIntelligent Technologies and Robotics (R0)