Secret-Free Device Pairing in the mmWave Band
Ziqi Xu, Jingcheng Li, Yanjun Pan, Ming Li, Loukas Lazos

TL;DR
This paper introduces the first secret-free device pairing method in the mmWave band that leverages physical-layer properties and environmental activity sensing to establish secure links without prior secrets.
Contribution
It presents a novel mmWave-specific pairing scheme using environment-based physical activity sampling and an uncoordinated path hopping mechanism for secure device authentication.
Findings
Successfully implemented in a 28GHz testbed
Effectively resists passive and active adversaries
Achieves reliable pairing in indoor environments
Abstract
Many Next Generation (NextG) applications feature devices that are capable of communicating and sensing in the Millimeter-Wave (mmWave) bands. Trust establishment is an important first step to bootstrap secure mmWave communication links, which is challenging due to the lack of prior secrets and the fact that traditional cryptographic authentication methods cannot bind digital trust with physical properties. Previously, context-based device pairing approaches were proposed to extract shared secrets from common context, using various sensing modalities. However, they suffer from various limitations in practicality and security. In this work, we propose the first secret-free device pairing scheme in the mmWave band that explores the unique physical-layer properties of mmWave communications. Our basic idea is to let Alice and Bob derive common randomness by sampling physical activity in…
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Taxonomy
TopicsUser Authentication and Security Systems · Wireless Communication Security Techniques · Biometric Identification and Security
