Pairwise secret key establishment leveraging properties of the wireless channel, is an effective security means in scenarios where no common secret or PKI is available. Related work has shown that secret bit streams can be extracted from, e.g., signal strength ratio measurement between two peers. However, they all require a considerable amount of computing resources by the two parties. In this paper we present SHAKE, a novel algorithm to establish a key using the physical properties of the wireless channel.SHAKE is particularly suitable for scenarios where the two peers have very diverse computational resources. For example, SHAKE can be used to establish a key between a sensor and the sink in a Wireless Sensor Network. We show that a secret key can be established shifting the computational burden on one peer while the other party only require one hash evaluation, what can be afforded by any resource constrained device. We evaluate SHAKE through theoretical analysis and provide validation through real world measurements. According to our experiments, the proposed protocol generates high-entropy bit at remarkable rates and enjoys minimal computational complexity requirements at one of the two parties.

SHAKE: Single HAsh Key Establishment for resource constrained devices

Barsocchi P;
2013

Abstract

Pairwise secret key establishment leveraging properties of the wireless channel, is an effective security means in scenarios where no common secret or PKI is available. Related work has shown that secret bit streams can be extracted from, e.g., signal strength ratio measurement between two peers. However, they all require a considerable amount of computing resources by the two parties. In this paper we present SHAKE, a novel algorithm to establish a key using the physical properties of the wireless channel.SHAKE is particularly suitable for scenarios where the two peers have very diverse computational resources. For example, SHAKE can be used to establish a key between a sensor and the sink in a Wireless Sensor Network. We show that a secret key can be established shifting the computational burden on one peer while the other party only require one hash evaluation, what can be afforded by any resource constrained device. We evaluate SHAKE through theoretical analysis and provide validation through real world measurements. According to our experiments, the proposed protocol generates high-entropy bit at remarkable rates and enjoys minimal computational complexity requirements at one of the two parties.
2013
Istituto di Scienza e Tecnologie dell'Informazione "Alessandro Faedo" - ISTI
Inglese
11
1
288
297
http://www.sciencedirect.com/science/article/pii/S1570870512001084
Sì, ma tipo non specificato
Wireless Sensor Networks
Key establishment
Signal strength ratio
Tipo Progetto EU_FP7 - UNIVERsal open platform and reference Specification for Ambient Assisted Living - Acronimo UNIVERSAAL - Grant agreement 247950
1
info:eu-repo/semantics/article
262
Barsocchi P.; Oligeri G.; Soriente C.
01 Contributo su Rivista::01.01 Articolo in rivista
partially_open
   UNIVERsal open platform and reference Specification for Ambient Assisted Living
   UNIVERSAAL
   FP7
   247950
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/289119
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