Secure Turbo Codes Design Using Chaotic Interleaver Based on Generalized 2D Chaotic Map

Design of interleavers with a compromise between reliability and complexity of implementation is a challenging code design problem. This paper deals with the design of chaotic interleavers for secure turbo codes using a novel generalized 2D chaotic map. Compared with random interleavers, the propose...

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Vydané v:Automatic control and computer sciences Ročník 58; číslo 4; s. 420 - 428
Hlavní autori: Ahmed Sahnoune, Chellali, Sefouane, Berkani, Daoud, Zeraoulia, Elhadj
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Moscow Pleiades Publishing 01.08.2024
Springer Nature B.V
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ISSN:0146-4116, 1558-108X
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Abstract Design of interleavers with a compromise between reliability and complexity of implementation is a challenging code design problem. This paper deals with the design of chaotic interleavers for secure turbo codes using a novel generalized 2D chaotic map. Compared with random interleavers, the proposed interleavers improve the performances while reducing the complexity of implementation. Furtheremore, parameters of chaotic maps can be used to jump from a map to the other which improve the security against decoding attacks. The proposed interleavers enhance the reliability and physical layer security.
AbstractList Design of interleavers with a compromise between reliability and complexity of implementation is a challenging code design problem. This paper deals with the design of chaotic interleavers for secure turbo codes using a novel generalized 2D chaotic map. Compared with random interleavers, the proposed interleavers improve the performances while reducing the complexity of implementation. Furtheremore, parameters of chaotic maps can be used to jump from a map to the other which improve the security against decoding attacks. The proposed interleavers enhance the reliability and physical layer security.
Author Chellali, Sefouane
Ahmed Sahnoune
Zeraoulia, Elhadj
Berkani, Daoud
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10.1002/047085474x
10.1109/ic2em59347.2023.10419762
10.1109/SWS.2011.6101288
10.1109/icc.1993.397441
10.1109/tit.2004.839478
10.3390/sym14122529
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10.1016/j.chaos.2007.06.018
10.1109/ISIT.2003.1228334
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Copyright Allerton Press, Inc. 2024. ISSN 0146-4116, Automatic Control and Computer Sciences, 2024, Vol. 58, No. 4, pp. 420–428. © Allerton Press, Inc., 2024.
Allerton Press, Inc. 2024.
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Keywords secure turbo codes
physical layer security
chaotic interleavers
generalized 2D chaotic map
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– reference: Hanzo, L., Liew, T.H., and Yeap, B.L., Turbo Coding, Turbo Equalisation and Space-Time Coding: For Transmission over Fading Channels, Wiley, 2002. https://doi.org/10.1002/047085474x
– reference: ZeraouliaE.SprottJ.C.A unified piecewise smooth chaotic mapping that contains the Hénon and the Lozi systems, Annu. Rev. Chaos Theory, BifurcationsDyn. Syst.201115060
– reference: Vucetic, B. and Yuan, J., Turbo Codes: Principles and Applications, The Springer International Series in Engineering and Computer Science, vol. 559, Springer, 2012. https://doi.org/10.1007/978-1-4615-4469-2
– reference: SahnouneA.BerkaniD.On the performance of chaotic interleaver for turbo codesSN Appl. Sci.2021310610.1007/s42452-021-04147-w
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– reference: Sahnoune, A., Berkani, D., and Zeraoulia, E., Secure turbo code design based on chaotic interleavers, 2023 2nd Int. Conf. on Electronics, Energy and Measurement (IC2EM), Medea, Algeria, 2023, IEEE, 2023. https://doi.org/10.1109/ic2em59347.2023.10419762
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– reference: Robertson, P., Villebrun, E., and Hoeher, P., A comparison of optimal and sub-optimal MAP decoding algorithms operating in the log domain, Proc. IEEE Int. Conf. on Communications ICC ’95, Seattle, Wash., 1995, IEEE, 1995, vol. 2, pp. 1009–1013. https://doi.org/10.1109/icc.1995.524253
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SubjectTerms Algorithms
Chaos theory
Codes
Complexity
Computer Science
Control Structures and Microprogramming
Decoding
Parity
Reliability
Satellite communications
Security
Turbo codes
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