4.6 Article

Lightweight and Certificateless Multi-Receiver Secure Data Transmission Protocol for Wireless Body Area Networks

Journal

IEEE TRANSACTIONS ON DEPENDABLE AND SECURE COMPUTING
Volume 19, Issue 3, Pages 1464-1475

Publisher

IEEE COMPUTER SOC
DOI: 10.1109/TDSC.2020.3025288

Keywords

Protocols; Data communication; Medical services; Receivers; Encryption; Multi-receiver data transmission; certificateless signcryption; multidisciplinary treatment; security; WBANs

Funding

  1. National Natural Science Foundation of China [U1836115, 61672295, 61922045, 61672290, 61877034]
  2. Natural Science Foundation of Jiangsu Province [BK20181408]
  3. Peng Cheng Laboratory Project of Guangdong Province [PCL2018KP004]
  4. CICAEET fund
  5. PAPD fund

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This article proposes a multi-receiver secure data transmission protocol for wireless body area networks (WBANs), supporting multidisciplinary team treatment. The protocol utilizes a novel certificateless generalized signcryption scheme, ensuring various security properties.
The rapid development of low-power integrated circuits, wireless communication, intelligent sensors, and microelectronics has allowed the realization of wireless body area networks (WBANs), which can monitor patients' vital body parameters remotely in real time to offer timely treatment. These vital body parameters are related to patients' life and health; and these highly private data are subject to many security threats. To guarantee privacy, many secure communication protocols have been proposed. However, most of these protocols have a one-to-one structure in extra-body communication and cannot support multidisciplinary team (MDT). Hence, we propose a lightweight and certificateless multi-receiver secure data transmission protocol for WBANs to support MDT treatment in this article. In particular, a novel multi-receiver certificateless generalized signcryption (MR-CLGSC) scheme is proposed that can adaptively use only one algorithm to implement one of three cryptographic primitives: signature, encryption or signcryption. Then, a multi-receiver secure data transmission protocol based on the MR-CLGSC scheme with many security properties, such as data integrity and confidentiality, non-repudiation, anonymity, forward and backward secrecy, unlinkability and data freshness, is designed. Both security analysis and performance analysis show that the proposed protocol for WBANs is secure, efficient, and highly practical.

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