An Efficient Post-Quantum User Authentication Protocol for Wireless Sensor Networks Using NTRU

Wireless sensor networks (WSNs) are pervasively employed in critical domains such as smart healthcare, industrial automation, and environmental surveillance, where secure access control is essential. User authentication protocols are vital for thwarting unauthorized intrusions, yet the vast majority of existing schemes rely on conventional public-key cryptography (such as ECC, RSA), which is provably insecure in the post-quantum era due to Shor’s algorithm. This motivates the design of post-quantum authentication that is also lightweight for resource-limited sensors. To address this challenge, we propose an efficient authentication and key agreement protocol based on Number Theory Research Unit (NTRU), a lattice-based cryptosystem offering proven resistance to quantum attacks. We have proven the correctness and security of our scheme through BAN logic and random oracle model and demonstrated through informal analysis that our scheme can resist various attack methods and possesses high security features. Moreover, we thoroughly evaluate our protocol against the most recent state-of-the-art schemes. The results indicate that our scheme has the lowest computational cost, and its communication cost is superior to that of most other schemes. Overall, our proposed protocol provides a robust, efficient, and future-proof authentication solution for WSNs, well-suited for deploying WSNs environments.

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Publication Details

Journal
Entropy
Published
2026-09-24
DOI
https://doi.org/10.3390/e28101049
Primary Topic
Security in Wireless Sensor Networks
Type
article
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0.00
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An Efficient Post-Quantum User Authentication Protocol for Wireless Sensor Networks Using NTRU

Jiaqing Mo, Yuhua Lin, Wei Shen
Entropy
Security in Wireless Sensor Networks
article

An Efficient Post-Quantum User Authentication Protocol for Wireless Sensor Networks Using NTRU

Jiaqing Mo, Yuhua Lin, Wei Shen
article en

Abstract

Wireless sensor networks (WSNs) are pervasively employed in critical domains such as smart healthcare, industrial automation, and environmental surveillance, where secure access control is essential. User authentication protocols are vital for thwarting unauthorized intrusions, yet the vast majority of existing schemes rely on conventional public-key cryptography (such as ECC, RSA), which is provably insecure in the post-quantum era due to Shor’s algorithm. This motivates the design of post-quantum authentication that is also lightweight for resource-limited sensors. To address this challenge, we propose an efficient authentication and key agreement protocol based on Number Theory Research Unit (NTRU), a lattice-based cryptosystem offering proven resistance to quantum attacks. We have proven the correctness and security of our scheme through BAN logic and random oracle model and demonstrated through informal analysis that our scheme can resist various attack methods and possesses high security features. Moreover, we thoroughly evaluate our protocol against the most recent state-of-the-art schemes. The results indicate that our scheme has the lowest computational cost, and its communication cost is superior to that of most other schemes. Overall, our proposed protocol provides a robust, efficient, and future-proof authentication solution for WSNs, well-suited for deploying WSNs environments.

EntropyVol. 28(10)
Zhaoqing University (CN)
Openalex Percentile: Top 9%
Security in Wireless Sensor Networks
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An Efficient Post-Quantum User Authentication Protocol for Wireless Sensor Networks Using NTRU — Jiaqing Mo, Yuhua Lin, et al. · Entropy (2026) | TGRS Research Map | TGRS