Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions

Abstract This paper presents an algorithm for designing a cryptographic system, in which the derivative disproportion functions (key functions) are used. This cryptographic system is used for an operative identification of a differential equation describing the movement of quasi-stationary object...

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Main Authors: Kalashnikov, Vyacheslav V., Avramenko, Viktor V., Slipushko, Nikolay Yu., Kalashnykova, Nataliya I., Konoplyanchenko, Anton E.
Format: Article
Language:English
Published: 2017
Subjects:
Online Access:http://eprints.uanl.mx/18184/1/471.pdf
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author Kalashnikov, Vyacheslav V.
Avramenko, Viktor V.
Slipushko, Nikolay Yu.
Kalashnykova, Nataliya I.
Konoplyanchenko, Anton E.
author_facet Kalashnikov, Vyacheslav V.
Avramenko, Viktor V.
Slipushko, Nikolay Yu.
Kalashnykova, Nataliya I.
Konoplyanchenko, Anton E.
author_sort Kalashnikov, Vyacheslav V.
collection Repositorio Institucional
description Abstract This paper presents an algorithm for designing a cryptographic system, in which the derivative disproportion functions (key functions) are used. This cryptographic system is used for an operative identification of a differential equation describing the movement of quasi-stationary objects. The symbols to be transmitted are encrypted by the sum of at least two of these functions combined with random coefficients. A new algorithm is proposed for decoding the received messages making use of important properties of the derivative disproportion f
format Article
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institution UANL
language English
publishDate 2017
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spelling eprints-181842020-03-12T18:34:55Z http://eprints.uanl.mx/18184/ Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions Kalashnikov, Vyacheslav V. Avramenko, Viktor V. Slipushko, Nikolay Yu. Kalashnykova, Nataliya I. Konoplyanchenko, Anton E. QA Matemáticas, Ciencias computacionales Abstract This paper presents an algorithm for designing a cryptographic system, in which the derivative disproportion functions (key functions) are used. This cryptographic system is used for an operative identification of a differential equation describing the movement of quasi-stationary objects. The symbols to be transmitted are encrypted by the sum of at least two of these functions combined with random coefficients. A new algorithm is proposed for decoding the received messages making use of important properties of the derivative disproportion f 2017-06-14 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/18184/1/471.pdf http://eprints.uanl.mx/18184/1.haspreviewThumbnailVersion/471.pdf Kalashnikov, Vyacheslav V. y Avramenko, Viktor V. y Slipushko, Nikolay Yu. y Kalashnykova, Nataliya I. y Konoplyanchenko, Anton E. (2017) Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions. Procedia Computer Science, 108. pp. 2100-2109. ISSN 18770509 http://doi.org/10.1016/j.procs.2017.05.266 doi:10.1016/j.procs.2017.05.266
spellingShingle QA Matemáticas, Ciencias computacionales
Kalashnikov, Vyacheslav V.
Avramenko, Viktor V.
Slipushko, Nikolay Yu.
Kalashnykova, Nataliya I.
Konoplyanchenko, Anton E.
Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions
title_full Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions
title_fullStr Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions
title_full_unstemmed Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions
title_short Identification of Quasi-Stationary Dynamic Objects with the Use of Derivative Disproportion Functions
title_sort identification of quasi stationary dynamic objects with the use of derivative disproportion functions
topic QA Matemáticas, Ciencias computacionales
url http://eprints.uanl.mx/18184/1/471.pdf
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