4.6 Article

A Lightweight Three-Factor Authentication and Key Agreement Scheme in Wireless Sensor Networks for Smart Homes

Journal

SENSORS
Volume 19, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/s19092012

Keywords

three-factor authentication; key agreement; password; smart card; biometrics; anonymity; untraceability; wireless sensor networks; Internet of Things; smart home

Funding

  1. Military Crypto Research Center - Defense Acquisition Program Administration(DAPA) [UD170109ED]
  2. Agency for Defense Development(ADD)
  3. National Research Foundation of Korea [21B20130000014] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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A wireless sensor network (WSN) is used for a smart home system's backbone that monitors home environment and controls smart home devices to manage lighting, heating, security and surveillance. However, despite its convenience and potential benefits, there are concerns about various security threats that may infringe on privacy and threaten our home life. For protecting WSNs for smart homes from those threats, authentication and key agreement are basic security requirements. There have been a large number of proposed authentication and key agreement scheme for WSNs. In 2017, Jung et al. proposed an efficient and security enhanced anonymous authentication with key agreement scheme by employing biometrics information as the third authentication factor. They claimed that their scheme resists on various security attacks and satisfies basic security requirements. However, we have discovered that Jung et al.'s scheme possesses some security weaknesses. Their scheme cannot guarantee security of the secret key of gateway node and security of session key and protection against user tracking attack, information leakage attack, and user impersonation attack. In this paper, we describe how those security weaknesses occur and propose a lightweight three-factor authentication and key agreement scheme in WSNs for smart homes, as an improved version of Jung et al.'s scheme. We then present a detailed analysis of the security and performance of the proposed scheme and compare the analysis results with other related schemes.

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