Analysis of short blocklength codes for secrecy

Detalhes bibliográficos
Autor(a) principal: Harrison, Willie K.
Data de Publicação: 2018
Outros Autores: Sarmento, Dinis, Vilela, João P., Gomes, Marco A. C.
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)
Texto Completo: https://hdl.handle.net/10316/101855
https://doi.org/10.1186/s13638-018-1276-1
Resumo: In this paper, we provide secrecy metrics applicable to physical-layer coding techniques with finite blocklengths over Gaussian and fading wiretap channel models and analyze their secrecy performance over several cases of concatenated code designs. Our metrics go beyond some of the known practical secrecy measures, such as bit error rate and security gap, so as to make lower bound probabilistic guarantees on error rates over short blocklengths both preceding and following a secrecy decoder. Our techniques are especially useful in cases where application of traditional information-theoretic security measures is either impractical or simply not yet understood. The metrics can aid both practical system analysis, including cryptanalysis, and practical system design when concatenated codes are used for physical-layer security. Furthermore, these new measures fill a void in the current landscape of practical security measures for physical-layer security coding and may assist in the wide-scale adoption of physical-layer techniques for security in real-world systems. We also show how the new metrics provide techniques for reducing realistic channel models to simpler discrete memoryless wiretap channel equivalents over which existing secrecy code designs may achieve information-theoretic security
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spelling Analysis of short blocklength codes for secrecyPhysical-layer securitySecurity measuresWiretap channelIn this paper, we provide secrecy metrics applicable to physical-layer coding techniques with finite blocklengths over Gaussian and fading wiretap channel models and analyze their secrecy performance over several cases of concatenated code designs. Our metrics go beyond some of the known practical secrecy measures, such as bit error rate and security gap, so as to make lower bound probabilistic guarantees on error rates over short blocklengths both preceding and following a secrecy decoder. Our techniques are especially useful in cases where application of traditional information-theoretic security measures is either impractical or simply not yet understood. The metrics can aid both practical system analysis, including cryptanalysis, and practical system design when concatenated codes are used for physical-layer security. Furthermore, these new measures fill a void in the current landscape of practical security measures for physical-layer security coding and may assist in the wide-scale adoption of physical-layer techniques for security in real-world systems. We also show how the new metrics provide techniques for reducing realistic channel models to simpler discrete memoryless wiretap channel equivalents over which existing secrecy code designs may achieve information-theoretic securityThis work was partially funded by the following entities and projects: the US National Science Foundation (Grant Award Number 1460085/1761280), the FLAD project INCISE (Interference and Coding for Secrecy), project SWING2 (PTDC/EEI-TEL/3684/2014), funded by Fundos Europeus Estruturais e de Investimento (FEEI) through Programa Operacional Competitividade e Internacionalização - COMPETE 2020 and by National Funds from FCT - Fundação para a Ciência e a Tecnologia, through projects POCI-01-0145-FEDER-016753 and UID/EEA/50008/2013.2018info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articlehttps://hdl.handle.net/10316/101855https://hdl.handle.net/10316/101855https://doi.org/10.1186/s13638-018-1276-1eng1687-1499Harrison, Willie K.Sarmento, DinisVilela, João P.Gomes, Marco A. C.info:eu-repo/semantics/openAccessreponame:Repositórios Científicos de Acesso Aberto de Portugal (RCAAP)instname:FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiainstacron:RCAAP2024-09-30T15:44:33Zoai:estudogeral.uc.pt:10316/101855Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireinfo@rcaap.ptopendoar:https://opendoar.ac.uk/repository/71602025-05-29T05:51:13.210532Repositórios Científicos de Acesso Aberto de Portugal (RCAAP) - FCCN, serviços digitais da FCT – Fundação para a Ciência e a Tecnologiafalse
dc.title.none.fl_str_mv Analysis of short blocklength codes for secrecy
title Analysis of short blocklength codes for secrecy
spellingShingle Analysis of short blocklength codes for secrecy
Harrison, Willie K.
Physical-layer security
Security measures
Wiretap channel
title_short Analysis of short blocklength codes for secrecy
title_full Analysis of short blocklength codes for secrecy
title_fullStr Analysis of short blocklength codes for secrecy
title_full_unstemmed Analysis of short blocklength codes for secrecy
title_sort Analysis of short blocklength codes for secrecy
author Harrison, Willie K.
author_facet Harrison, Willie K.
Sarmento, Dinis
Vilela, João P.
Gomes, Marco A. C.
author_role author
author2 Sarmento, Dinis
Vilela, João P.
Gomes, Marco A. C.
author2_role author
author
author
dc.contributor.author.fl_str_mv Harrison, Willie K.
Sarmento, Dinis
Vilela, João P.
Gomes, Marco A. C.
dc.subject.por.fl_str_mv Physical-layer security
Security measures
Wiretap channel
topic Physical-layer security
Security measures
Wiretap channel
description In this paper, we provide secrecy metrics applicable to physical-layer coding techniques with finite blocklengths over Gaussian and fading wiretap channel models and analyze their secrecy performance over several cases of concatenated code designs. Our metrics go beyond some of the known practical secrecy measures, such as bit error rate and security gap, so as to make lower bound probabilistic guarantees on error rates over short blocklengths both preceding and following a secrecy decoder. Our techniques are especially useful in cases where application of traditional information-theoretic security measures is either impractical or simply not yet understood. The metrics can aid both practical system analysis, including cryptanalysis, and practical system design when concatenated codes are used for physical-layer security. Furthermore, these new measures fill a void in the current landscape of practical security measures for physical-layer security coding and may assist in the wide-scale adoption of physical-layer techniques for security in real-world systems. We also show how the new metrics provide techniques for reducing realistic channel models to simpler discrete memoryless wiretap channel equivalents over which existing secrecy code designs may achieve information-theoretic security
publishDate 2018
dc.date.none.fl_str_mv 2018
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
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status_str publishedVersion
dc.identifier.uri.fl_str_mv https://hdl.handle.net/10316/101855
https://hdl.handle.net/10316/101855
https://doi.org/10.1186/s13638-018-1276-1
url https://hdl.handle.net/10316/101855
https://doi.org/10.1186/s13638-018-1276-1
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv 1687-1499
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