Publication result detail

Power Consumption of Hardware Cryptography Platform for Wireless Sensor

PECHO, P.; HANÁČEK, P.; NAGY, J.

Original Title

Power Consumption of Hardware Cryptography Platform for Wireless Sensor

English Title

Power Consumption of Hardware Cryptography Platform for Wireless Sensor

Type

Paper in proceedings outside WoS and Scopus

Original Abstract

Wireless sensor networks usually require certain level
of security, however there is lack of sensor nodes with
cryptographic hardware build-in. We proved realization of
cryptographic platform based on smart card-sensor node
connection. Time complexity and power consumption of
the platform was measured and compared to conventional
software implementation. Our results showed low power
demand and high efficiency of public key cryptography
running on the platform.

 

English abstract

Wireless sensor networks usually require certain level
of security, however there is lack of sensor nodes with
cryptographic hardware build-in. We proved realization of
cryptographic platform based on smart card-sensor node
connection. Time complexity and power consumption of
the platform was measured and compared to conventional
software implementation. Our results showed low power
demand and high efficiency of public key cryptography
running on the platform.

 

Keywords

wireless sensor networks, power consumption, smart cards, security

Key words in English

wireless sensor networks, power consumption, smart cards, security

Authors

PECHO, P.; HANÁČEK, P.; NAGY, J.

Released

23.12.2009

Publisher

IEEE Computer Society

Location

Higashu Hiroshima

ISBN

978-0-7695-3914-0

Book

Proceedings of International Conference on Parallel and Distributed Computing

Pages from

79

Pages to

84

Pages count

6

URL

BibTex

@inproceedings{BUT30913,
  author="Peter {Pecho} and Petr {Hanáček} and Jan {Nagy}",
  title="Power Consumption of Hardware Cryptography Platform for Wireless Sensor",
  booktitle="Proceedings of International Conference on Parallel and Distributed Computing",
  year="2009",
  pages="79--84",
  publisher="IEEE Computer Society",
  address="Higashu Hiroshima",
  isbn="978-0-7695-3914-0",
  url="http://portal.acm.org/citation.cfm?id=1730106"
}