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Cryptology transmitted message prote...
~
SpringerLink (Online service)
Cryptology transmitted message protection = from deterministic chaos up to optical vortices /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Cryptology transmitted message protection/ by Igor Izmailov ... [et al.].
Reminder of title:
from deterministic chaos up to optical vortices /
other author:
Izmailov, Igor.
Published:
Cham :Springer International Publishing : : 2016.,
Description:
xxviii, 364 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Data encryption (Computer science) -
Online resource:
http://dx.doi.org/10.1007/978-3-319-30125-9
ISBN:
9783319301259
Cryptology transmitted message protection = from deterministic chaos up to optical vortices /
Cryptology transmitted message protection
from deterministic chaos up to optical vortices /[electronic resource] :by Igor Izmailov ... [et al.]. - Cham :Springer International Publishing :2016. - xxviii, 364 p. :ill. (some col.), digital ;24 cm. - Signals and communication technology,1860-4862. - Signals and communication technology..
Introduction -- Radio Electronic and Optical Chaos Oscillators Applicable for Information Protection -- Simulation of the Radio Electronic Communication System on the Basis of the Chaotic Oscillator with Nonlinearity in the Form of Parabolas Composition -- Simulation of Data Ciphering and Deciphering with the Help of Nonlinear Interferometers in the Optical System of Synchronous Chaotic Communication -- Optical Vortices in Non-Ring Interferometer and a Model of the Digital Communication System -- Conclusion.
This book presents methods to improve information security for protected communication. It combines and applies interdisciplinary scientific engineering concepts, including cryptography, chaos theory, nonlinear and singular optics, radio-electronics and self-changing artificial systems. It also introduces additional ways to improve information security using optical vortices as information carriers and self-controlled nonlinearity, with nonlinearity playing a key "evolving" role. The proposed solutions allow the universal phenomenon of deterministic chaos to be discussed in the context of information security problems on the basis of examples of both electronic and optical systems. Further, the book presents the vortex detector and communication systems and describes mathematical models of the chaos oscillator as a coder in the synchronous chaotic communication and appropriate decoders, demonstrating their efficiency both analytically and experimentally. Lastly it discusses the cryptologic features of analyzed systems and suggests a series of new structures for confident communication.
ISBN: 9783319301259
Standard No.: 10.1007/978-3-319-30125-9doiSubjects--Topical Terms:
658943
Data encryption (Computer science)
LC Class. No.: QA76.9.A25
Dewey Class. No.: 005.8
Cryptology transmitted message protection = from deterministic chaos up to optical vortices /
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Introduction -- Radio Electronic and Optical Chaos Oscillators Applicable for Information Protection -- Simulation of the Radio Electronic Communication System on the Basis of the Chaotic Oscillator with Nonlinearity in the Form of Parabolas Composition -- Simulation of Data Ciphering and Deciphering with the Help of Nonlinear Interferometers in the Optical System of Synchronous Chaotic Communication -- Optical Vortices in Non-Ring Interferometer and a Model of the Digital Communication System -- Conclusion.
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This book presents methods to improve information security for protected communication. It combines and applies interdisciplinary scientific engineering concepts, including cryptography, chaos theory, nonlinear and singular optics, radio-electronics and self-changing artificial systems. It also introduces additional ways to improve information security using optical vortices as information carriers and self-controlled nonlinearity, with nonlinearity playing a key "evolving" role. The proposed solutions allow the universal phenomenon of deterministic chaos to be discussed in the context of information security problems on the basis of examples of both electronic and optical systems. Further, the book presents the vortex detector and communication systems and describes mathematical models of the chaos oscillator as a coder in the synchronous chaotic communication and appropriate decoders, demonstrating their efficiency both analytically and experimentally. Lastly it discusses the cryptologic features of analyzed systems and suggests a series of new structures for confident communication.
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