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Dive into the research topics where Ilia Romanov is active.

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Featured researches published by Ilia Romanov.


Archive | 2016

Deterministic Chaos Phenomenon from the Standpoint of Information Protection Tasks

I. V. Izmailov; B. N. Poizner; Ilia Romanov; Sergey Smolskiy

Elements of classical cryptology are described. The optical vortex is interpreted as the information carrier. Fundamentals of the dynamic chaos oscillator operation are disclosed including optical ones, mathematical models are discussed, principles of its application for information protection are described.


international crimean conference microwave and telecommunication technology | 2014

Dynamic chaos in a problem of objects positioning: On a capability and features of application

Ilia Romanov; I. V. Izmailov; B. N. Poizner

Possibility of dynamic chaos using for determination of navigation objects position (over a communication channel length, or for a signal delay time in it) is discussed. In this context the correlation properties of dynamic modes of spiral and screw chaos types are studied and compared using a Rössler generator as an example:.


Proceedings of SPIE | 2005

Nonlinear optical fiber interferometer: a model and simulation

I. V. Izmailov; B. N. Poizner; Ilia Romanov

Optical scheme of three-channel nonlinear fiber-optic lightguide interferometer (NFOLI) is developed. The base of mathematical model of processes in NFOLI is two ordinary differential equations describing dynamics of nonlinear phase shift of light field in the core and in the facing of optical fiber. Phase portraits and Fourier spectrum are constructed. It is obvious that under various parameters in the model regimes of static state, periodical oscillations and deterministic chaos are possible. The optical scheme of three-channel nonlinear optical fiber interferometer (NFOLI) contains three inputs and three outputs, nonlinear medium (NM), which is single mode step-graded index lightguide doped by HgCdTe. Relaxation time of the material nonlinear acceptability τ=10-12s, nonlinear refractive index n2=10-6 cm2/W. The base of mathematical model of processes in NFOLI (which is constructed in relevant approximations) is two ordinary differential equations describing dynamics of nonlinear phase shift u1,ne1 of light field in the core and nonlinear phase shift u2,ne1 in the facing of fiber-optic lightguide. Simulation demonstrates that under various values of nonlinearity coefficient K in the model (1)-(7) regimes of periodical oscillations and deterministic chaos are possible. This means htat NFOLI can be service as a base of optical information security system.


Archive | 2016

Radio Electronic System for Data Transmission on the Base of the Chaotic Oscillator with Nonlinearity in the form of Parabola Composition: Modeling and Experiment

I. V. Izmailov; B. N. Poizner; Ilia Romanov; Sergey Smolskiy

The structural circuit, the mathematical model and laboratory experiments results are described, which explain properties of the radio electronic chaotic oscillator with nonlinearity in the form of parabola composition. Factors influencing to confidential communication quality, which use this oscillator, are studied.


Archive | 2016

Nonlinear-Dynamic Cryptology Versus Steganography and Cryptografics

I. V. Izmailov; B. N. Poizner; Ilia Romanov; Sergey Smolskiy

The book “Cryptology Transmitted Message Protection” results are summed up laconically. Authors indicate potential ways of further fundamental investigations in this field. In particular, it should be necessary to eliminate a break between nonlinear dynamic cryptographic paradigm and the traditional ones. The authors position is to be able to generate a discussion of professionals on this interesting and promising direction.


Archive | 2016

Optical Vortices in Ring and Non-ring Interferometers and a Model of the Digital Communication System

I. V. Izmailov; B. N. Poizner; Ilia Romanov; Sergey Smolskiy

Steganography and physical resistance of the confidential communication system using properties of the wave front of the electromagnetic wave with screw dislocation is discussed. This system uses the high-speed vortex detector offered by authors.


Archive | 2016

Single- and Double-Circuit Nonlinear Ring Interferometer as a Cipherer in Optical Systems of Synchronous Chaotic Communications

I. V. Izmailov; B. N. Poizner; Ilia Romanov; Sergey Smolskiy

Properties of nonlinear optical interferometers are described, which compose the basis of the chaotic oscillators. Its advantages and shortcomings are analyzed from the point of view of confidential communication system resistance, which uses these devices.


Archive | 2016

Radiophysical and Optical Chaotic Oscillators Applicable for Information Protection

I. V. Izmailov; B. N. Poizner; Ilia Romanov; Sergey Smolskiy

Mathematical models created and offered by authors are described, computer and laboratory experiments results are discussed, which disclose properties of radio electronic and optical chaotic oscillators. In this context, the suggested optical analog of the cytoskeleton microtubule is shown.


Archive | 2016

Variety of Nonlinear Type in the Chaotic Oscillator and Structure Organization of the Chaotic Communication System as a Way to Increase the Confidence Degree

I. V. Izmailov; B. N. Poizner; Ilia Romanov; Sergey Smolskiy

As the strategy of resistance increase of the confidential communication systems, authors offer diversification of the nonlinear element of the chaotic oscillator. The idea of the distantly controlled and self-changing transfer characteristic of the nonlinear element is put forward. It is shown that the similar approach to the nonlinearity is under practice unconsciously in optics from XIX century.


21st International Symposium Atmospheric and Ocean Optics: Atmospheric Physics | 2015

Mathematical modeling of the receiving antennas of Ionosonde "TOMION"

Alexander Mitaev; R. K. Khaitov; M. V. Pikalov; Ilia Romanov; E. S. Kolesnik; S. A. Kolesnik

The work is devoted to modeling and defining optimal performance phased array Ionosonde «TOMION».

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Sergey Smolskiy

Moscow Power Engineering Institute

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