NICRFeb 20, 2018

BAN-GZKP: Optimal Zero Knowledge Proof based Scheme for Wireless Body Area Networks

arXiv:1802.07023v116 citations
Originality Incremental advance
AI Analysis

This work addresses security vulnerabilities and mobility issues in WBANs, which are critical for healthcare monitoring, but it is incremental as it builds directly on a prior scheme.

The paper tackles the problem of secure authentication in Wireless Body Area Networks (WBANs) by proposing BAN-GZKP, which improves security and resilience to human body postural mobility compared to the existing BANZKP scheme, with no additional cost in memory, computational complexity, or energy consumption.

BANZKP is the best to date Zero Knowledge Proof (ZKP) based secure lightweight and energy efficient authentication scheme designed for Wireless Area Network (WBAN). It is vulnerable to several security attacks such as the replay attack, Distributed Denial-of-Service (DDoS) attacks at sink and redundancy information crack. However, BANZKP needs an end-to-end authentication which is not compliant with the human body postural mobility. We propose a new scheme BAN-GZKP. Our scheme improves both the security and postural mobility resilience of BANZKP. Moreover, BAN-GZKP uses only a three-phase authentication which is optimal in the class of ZKP protocols. To fix the security vulnerabilities of BANZKP, BAN-GZKP uses a novel random key allocation and a Hop-by-Hop authentication definition. We further prove the reliability of our scheme to various attacks including those to which BANZKP is vulnerable. Furthermore, via extensive simulations we prove that our scheme, BAN-GZKP, outperforms BANZKP in terms of reliability to human body postural mobility for various network parameters (end-to-end delay, number of packets exchanged in the network, number of transmissions). We compared both schemes using representative convergecast strategies with various transmission rates and human postural mobility. Finally, it is important to mention that BAN-GZKP has no additional cost compared to BANZKP in terms memory, computational complexity or energy consumption.

Foundations

The foundational work for this paper's niche, ranked by how specifically the neighbourhood builds on it — not by global fame.

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