PriTKT: A Blockchain-Enhanced Privacy-Preserving Electronic Ticket System for IoT Devices

Author:

Zhan Yonghua1,Yuan Feng2,Shi Rui3,Shi Guozhen3,Dong Chen1ORCID

Affiliation:

1. College of Computer and Data Science, Fuzhou University, Fuzhou 350108, China

2. Institute 706, The Second Academy China Aerospace Science & Industry Corp, Beijing 100854, China

3. Beijing Electronic Science and Technology Institute, Beijing 100070, China

Abstract

Electronic tickets (e-tickets) are gradually being adopted as a substitute for paper-based tickets to bring convenience to customers, corporations, and governments. However, their adoption faces a number of practical challenges, such as flexibility, privacy, secure storage, and inability to deploy on IoT devices such as smartphones. These concerns motivate the current research on e-ticket systems, which seeks to ensure the unforgeability and authenticity of e-tickets while simultaneously protecting user privacy. Many existing schemes cannot fully satisfy all these requirements. To improve on the current state-of-the-art solutions, this paper constructs a blockchain-enhanced privacy-preserving e-ticket system for IoT devices, dubbed PriTKT, which is based on blockchain, structure-preserving signatures (SPS), unlinkable redactable signatures (URS), and zero-knowledge proofs (ZKP). It supports flexible policy-based ticket purchasing and ensures user unlinkability. According to the data minimization and revealing principle of GDPR, PriTKT empowers users to selectively disclose subsets of (necessary) attributes to sellers as long as the disclosed attributes satisfy ticket purchasing policies. In addition, benefiting from the decentralization and immutability of blockchain, effective detection and efficient tracing of double spending of e-tickets are supported in PriTKT. Considering the impracticality of existing e-tickets schemes with burdensome ZKPs, we replace them with URS/SPS or efficient ZKP to significantly improve the efficiency of ticket issuing and make it suitable for use on smartphones.

Funder

National Natural Science Foundation of China

Fujian Provincial Natural Science of Foundation

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference50 articles.

1. Iata.org (2024, January 01). TATA. Available online: https://www.iata.org/en/services/certification/operations-safety-security/.

2. Group, R.D. (2024, January 01). Rail Technical Strategy Capability Delivery Plan. Available online: https://www.rssb.co.uk/.

3. Group, T.S.L. (2024, January 01). The Future Railway—The Industry’s Rail Technical Strategy 2012. Available online: https://www.rssb.co.uk/.

4. Nakamoto, S. (2024, January 01). Bitcoin: A Peer-to-Peer Electronic Cash System. Available online: https://bitcoin.org/bitcoin.pdf.

5. Sasson, E.B., Chiesa, A., Garman, C., Green, M., Miers, I., Tromer, E., and Virza, M. (2014, January 18–21). Zerocash: Decentralized anonymous payments from bitcoin. Proceedings of the 2014 IEEE Symposium on Security and Privacy, Berkeley, CA, USA.

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