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Cross Domain Heterogeneous Signcryption Scheme with Equality Test for WBAN

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Abstract

The rapid development of wireless sensors has accelerated the popularity of wireless body area network (WBAN). WBAN use multiple sensors to collect the patient’s body data, and the data is transferred to the medical cloud for processing and analyzing. In order to protect the data in the medical cloud, some heterogeneous signcryption schemes that support equality test have been proposed. However, we observe that these schemes use the same cryptographic parameters in different cryptographic systems. In addition, most of these schemes cannot resist the replay attack (RRA) or know session temporary key attack (RKSTKA). To deal with these problems, this paper presents a cross domain heterogeneous signcryption scheme with equality test (CDSCET) for WBAN. In CDSCET, the ciphertexts are from certificateless cryptographic system to public key infrastructure, where two different cryptosystems use different cryptographic parameters. CDSCET can realize confidentiality, integrity, authentication, RRA and RKSTKA. Moreover, compared with three latest schemes, CDSCET has reduced the total computation cost by at least 56.46%.

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References

  1. Cornet, B., Fang, H., & Ngo, H. (2022). An overview of wireless body area networks for mobile health applications. IEEE Network, 36(1), 76–82.

    Article  Google Scholar 

  2. Ananthi, J. V., & Jose, P. (2021). A perspective review of security challenges in body area networks for healthcare applications. International Journal of Wireless Information Networks, 28(4), 451–466.

    Article  Google Scholar 

  3. Azees, M., Vijayakumar, P., & Karuppiah, M. (2021). An efficient anonymous authentication and confidentiality preservation schemes for secure communications in wireless body area networks. Wireless Networks, 27(3), 2119–2130.

    Article  Google Scholar 

  4. Cheng, Q., Li, Y., & Shi, W. (2021). A certificateless authentication and key agreement scheme for secure cloud-assisted wireless body area network. Mobile Networks and Applications, 27, 1–11.

    Google Scholar 

  5. Narwal, B., & Mohapatra, A. K. (2021). SAMAKA: Secure and anonymous mutual authentication and key agreement scheme for wireless body area networks. Arabian Journal for Science and Engineering, 46, 1–23.

    Article  Google Scholar 

  6. Izza, S., Benssalah, M., & Drouiche, K. (2021). An enhanced scalable and secure RFID authentication protocol for WBAN within an IoT environment. Journal of Information Security and Applications, 58, 102705.

    Article  Google Scholar 

  7. Boneh, D., Di Crescenzo, G., & Ostrovsky, R. (2004). Public key encryption with keyword search. In International conference on the theory and applications of cryptographic techniques (pp. 506–522).

  8. Yang, G., Tan, C. H., & Huang, Q. (2010). Probabilistic public key encryption with equality test. In Cryptographers’ track at the RSA conference (pp. 119–131).

  9. Ramadan, M., Liao, Y., & Li, F. (2020). IBEET-RSA: Identity-based encryption with equality test over RSA for wireless body area networks. Mobile Networks and Applications, 25(1), 223–233.

    Article  Google Scholar 

  10. Zheng, Y. (1997). Digital signcryption or how to achieve cost (signature & encryption)≪ cost (signature) + cost (encryption). In Annual international cryptology conference (pp. 165–179).

  11. Xiong, H., Hou, Y., & Huang, X. (2020). Secure message classification services through identity-based signcryption with equality test towards the Internet of vehicles. Vehicular Communications, 26, 100264.

    Article  Google Scholar 

  12. Hou, Y., Huang, X., & Chen, Y. (2021). Heterogeneous signcryption scheme supporting equality test from PKI to CLC toward IoT. Transactions on Emerging Telecommunications Technologies, 32(8), e4190.

    Article  Google Scholar 

  13. Xiong, H., Zhao, Y., & Hou, Y. (2020). Heterogeneous signcryption with equality test for IIoT environment. IEEE Internet of Things Journal. https://doi.org/10.1109/JIOT.2020.3008955

    Article  Google Scholar 

  14. Li, W., Xia, C., & Wang, C. (2022). Secure and temporary access delegation with equality test for cloud-assisted IoV. IEEE Transactions on Intelligent Transportation Systems. https://doi.org/10.1109/TITS.2022.3174716

    Article  Google Scholar 

  15. Lin, H., Zhao, Z., & Gao, F. (2021). Lightweight public key encryption with equality test supporting partial authorization in cloud storage. The Computer Journal, 64(8), 1226–1238.

    Article  MathSciNet  Google Scholar 

  16. Deverajan, G. G., Muthukumaran, V., & Hsu, C. H. (2022). Public key encryption with equality test for Industrial Internet of Things system in cloud computing. Transactions on Emerging Telecommunications Technologies, 33(4), e4202.

    Article  Google Scholar 

  17. Lin, X. J., Sun, L., & Qu, H. (2021). Public key encryption supporting equality test and flexible authorization without bilinear pairings. Computer Communications, 170, 190–199.

    Article  Google Scholar 

  18. Hassan, A., Elhabob, R., & Eltayieb, N. (2021). An authorized equality test on identity-based cryptosystem for mobile social networking applications. Transactions on Emerging Telecommunications Technologies, 32, e4361.

    Article  Google Scholar 

  19. Xu, Y., Wang, M., & Zhong, H. (2021). IBEET-AOK: ID-based encryption with equality test against off-line KGAs for cloud medical services. Frontiers of Computer Science, 15(6), 1–3.

    Article  Google Scholar 

  20. Elhabob, R., Zhao, Y., & Sella, I. (2020). An efficient certificateless public key cryptography with authorized equality test in IIoT. Journal of Ambient Intelligence and Humanized Computing, 11(3), 1065–1083.

    Article  Google Scholar 

  21. Alornyo, S., Mohammed, M. A., & Anibrika, B. S. (2021). ID-based plaintext checkable signcryption with equality test in healthcare systems. SN Computer Science, 2(1), 1–9.

    Article  Google Scholar 

  22. Le, H. Q., Duong, D. H., & Roy, P. S. (2021). Lattice-based signcryption with equality test in standard model. Computer Standards & Interfaces, 76, 103515.

    Article  Google Scholar 

  23. Xiong, H., Hou, Y., & Huang, X. (2021). Heterogeneous signcryption scheme from IBC to PKI with equality test for WBAN. IEEE Systems Journal. https://doi.org/10.1109/JSYST.2020.3048972

    Article  Google Scholar 

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Funding

This study was funded by the National Natural Science Foundation of China (grant number 62262041) and postgraduate innovation foundation of Nanchang University (No. YC2021-S167).

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ML and YP wrote the main manuscript text, MQ prepared Tables 1, 2, 3, 4 and Figs. 1, 2, 3, 4. All authors reviewed and approved the final version of the manuscript.

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Correspondence to Ming Luo.

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Luo, M., Pei, Y. & Qiu, M. Cross Domain Heterogeneous Signcryption Scheme with Equality Test for WBAN. Wireless Pers Commun 130, 1107–1122 (2023). https://doi.org/10.1007/s11277-023-10322-6

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