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Avtometriya

2013

Number: 2

4611.
TRACKING OF SEVERAL OBJECTS IN A SEISMIC DETECTOR

S. A. Alyamkin, E. S. Nezhevenko
Institute of Automation and Electrometry, Siberian Branch, Russian Academy of Sciences, pr. Akademika Koptyuga 1, Novosibirsk, 630090 Russia
alyamkin@uniscan.biz
Keywords: seismic detector, localization, direction characteristic, multiplicative antenna
Subsection: ANALYSIS AND SYNTHESIS OF SIGNALS AND IMAGES

Abstract >>
Methods of processing of seismic signals from antennas of two seismic receivers for localization of several objects are considered. The possibility of localization is provided by means of multiplicative or broadband processing; in this case, a multielement antenna having a narrow direction diagram is synthesized from two detectors. The efficiency of the approaches based on localization of two sources of the signal is demonstrated by an example of modeling and real seismic data.



Number: 2

4612.
EFFICIENCY OF VECTOR FIELD FILTRATION ALGORITHMS IN ESTIMATING MATERIAL STRAIN BY THE METHOD OF DIGITAL IMAGE CORRELATION

S. V. Panin1,2, V. V. Titkov1, P. S. Lyubutin1
1Institute of Strength Physics and Material Science, Siberian Branch, pr. Akademicheskii 2/4, Tomsk, 634021 Russia
svp@ispms.tsc.ru
2Tomsk Polytechnical University, pr. Lenina 30, Tomsk, 634050 Russia
Keywords: filtration, noise, vector fields, shear strain intensity
Subsection: ANALYSIS AND SYNTHESIS OF SIGNALS AND IMAGES

Abstract >>
Various filtration methods are compared by an example of processing of model and experimental vector fields. A criterion for estimating the filtration efficiency is proposed. It is demonstrated that combined vector filters ensure more efficient filtration than other popular methods.



Number: 2

4613.
ANALYSIS OF MULTIPLE CRACKING OF NANOCOATING AS A CYCLIC RANDOM PROCESS

I. V. Lytvynenko, S. A. Lupenko, P. O. Marushchak
a:2:{s:4:"TEXT";s:123:"Ternopil Ivan Pul’uj National Technical University, ul. Russkaya 56, Ternopil, 46001 Ukraine
Maruschak.tu.edu@gmail.com";s:4:"TYPE";s:4:"html";}
Keywords: model, cyclic random process, multiple cracking, nanocoating
Subsection: ANALYSIS AND SYNTHESIS OF SIGNALS AND IMAGES

Abstract >>
A mathematical model of multiple cracking of a zirconium nanocoating is proposed that makes it possible to obtain informative characteristics for quantitative analysis of the cracked surface taking into account the stochastic and cyclic nature of the process is proposed.



Number: 2

4614.
CLASSIFICATION MEASUREMENTS: METHODS AND IMPLEMENTATION

V. V. Gubarev1, A. A. Gorshenkov2, Yu. N. Klikushin2, V. Yu. Kobenko2
1Novosibirsk State Technical University, pr. Karla Marksa 20, Novosibirsk, 630092 Russia
gubarev@vt.cs.nstu.ru
2Omsk State Technical University, pr. Mira 11, Omsk, 644050 Russia
gorshenkov@omgtu.ru
Keywords: algorithm, diagnosis, categorical measurement scale, classification, model, result reliability
Subsection: ANALYSIS AND SYNTHESIS OF SIGNALS AND IMAGES

Abstract >>
This paper considers the conceptual apparatus, basic ideas, structure, and some features of the establishment and development of a new area of research that emerged at the intersection of measurement theory and applied statistics. Examples and methods of solution of problems of classification measurements of random signal distribution shapes and the state of rechargeable batteries based on the use of categorical measurement scales are described.



Number: 2

4615.
SOLUTION OF THE PROBLEM OF PHASE AMBIGUITY BY INTEGER INTERFEROMETRY

a:2:{s:4:"TEXT";s:60:"V. I. Guzhov, S. P. Il’inykh, R. A. Kuznetsov, A. R. Vagizov";s:4:"TYPE";s:4:"text";}
Novosibirsk State Technical University, pr. Karla Marksa 20, Novosibirsk, 630092 Russia
vig@edu.nstu.ru
Keywords: optics, interferometry, phase-shifting interferometry, resolution of phase ambiguity
Subsection: ANALYSIS AND SYNTHESIS OF SIGNALS AND IMAGES

Abstract >>
An automatic method is proposed to resolve phase ambiguity in interpreting fringe patterns by a series of two phase distributions with different periods. The method does not require identification of local phase transitions in adjacent image regions and can determine the total phase at each point separately.



Number: 2

4616.
TERAHERTZ MICROLENS ARRAY EMITTER BASED ON THE TRANSVERSE DEMBER CROSS EFFECT

a:2:{s:4:"TEXT";s:99:"V. D. Antsygin, A. S. Konchenko, V. P. Korol’kov, A. A. Mamrashev, N. A. Nikolaev, O. I. Potaturkin";s:4:"TYPE";s:4:"text";}
1Institute of Automation and Electrometry, Siberian Branch, Russian Academy of Sciences, pr. Akademika Koptyuga 1, Novosibirsk, 630090 Russia
antsigin@iae.nsk.su
2Novosibirsk State University, ul. Pirogova 2, Novosibirsk, 630090 Russia
viktork@iae.nsk.su
Keywords: terahertz radiation, Dember effect, Talbot effect, femtosecond laser, array illuminator
Subsection: PHYSICAL AND TECHNICAL PRINCIPLES OF MICRO- AND OPTOELECTRONICS

Abstract >>
A new method for generating terahertz radiation by exposure to femtosecond laser pulses on the semiconductor surface is proposed. The essence of this method is that the exciting radiation intensity is subjected to spatial modulation by using a microlens array and by shading a part of the semiconductor surface by metal stripes. This gives rise to a concentration gradient of photo carriers along the surface at the sharp boundary of the metallic coating in the semiconductor (transverse Dember photoelectric effect), and its relaxation for times of ~1 ps results in the emission of electromagnetic pulses of the terahertz range. A terahertz emitter model based on the proposed method was developed and designed, its efficiency was demonstrated, and methods for increasing its efficiency were considered.



Number: 2

4617.
SILICON DIFFRACTIVE OPTICAL ELEMENTS FOR HIGH-POWER MONOCHROMATIC TERAHERTZ RADIATION

a:2:{s:4:"TEXT";s:286:"A. N. Agafonov1, B. O. Volodkin1, A. K. Kaveev2, B. A. Knyazev3,4, G. I. Kropotov2, V. S. Pavel’ev1,5, V. A. Soifer1,5, K. N. Tukmakov1, E. V. Tsygankova2, Yu. Yu. Choporova3,4";s:4:"TYPE";s:4:"html";}
a:2:{s:4:"TEXT";s:680:"1Korolev Samara State Aerospace University, Moskovskoe Shosse 34, Samara, 443086 Russia
andr_agafonov@mail.ru
2Tydex company, ul. Domostroitel’naya 16, St. Petersburg 194292, Russia
andreykaveev@tydex.ru
3Budker Institute of Nuclear Physics, Siberian Branch, Russian Academy of Sciences, pr. Akademika Lavrent’eva 11, Novosibirsk, 630090 Russia
knyazev@inp.nsk.su
4Novosibirsk State University, ul. Pirogova 2, Novosibirsk, 630090 Russia
yulia.choporova@inp.nsk.su
5Image Processing Systems Institute, Russian Academy of Sciences, ul. Molodogvardeiskaya 151, Samara, 443001 Russia
nano@ssau.ru";s:4:"TYPE";s:4:"html";}
Keywords: DOE, terahertz radiation
Subsection: PHYSICAL AND TECHNICAL PRINCIPLES OF MICRO- AND OPTOELECTRONICS

Abstract >>
This paper presents a fabrication technique and results of studies of silicon binary diffractive optical elements (DOEs): a diffractive lens and a 1 : 2 diffractive beam splitter with an aperture diameter of 30 mm for the terahertz spectral range. The elements were fabricated in two versions: with and without an antireflection coating of parylene C. The DOE characteristics were investigated in the beam of the Novosibirsk free electron laser at a wavelength of 141 µm. The results are given of a study of the radiation resistance of the coating, which remained intact upon exposure to an average radiation power density of 4 kW/cm2; the peak power in a 100 ps pulse was almost 8 MW/cm2. Experimental estimates of the diffraction efficiency of the elements coated with the antireflection coating are in good agreement with theoretical estimates.



Number: 2

4618.
MEASUREMENT OF BUBBLE AND DROPLET DIAMETERS BY THE DOPPLER ANEMOMETRY

A. P. Belousov1,2, P. Ya. Belousov1,2, L. A. Borynyak1
a:2:{s:4:"TEXT";s:300:"1Novosibirsk State Technical University, pr. Karla Marksa 20, Novosibirsk, 630092 Russia
abelousov@ngs.ru
2Kutateladze Institute of Thermophysics, Siberian Branch, Russian Academy of Sciences, pr. Akademika Lavrent’eva 1, Novosibirsk, 630090 Russia
pyabelousov@ngs.ru";s:4:"TYPE";s:4:"html";}
Keywords: gas–liquid flows, Doppler diagnostics, droplet size, sampling area
Subsection: PHYSICAL AND TECHNICAL PRINCIPLES OF MICRO- AND OPTOELECTRONICS

Abstract >>
Interaction of a probing laser beam with a liquid droplet is analyzed theoretically. It is shown that the amplitude of the Doppler signal obtained from a moving droplet depends on its position with respect to the beam waist. The possibility of determining the radii of droplets and bubbles moving in the flow from the spatial positions of the extreme points of the Doppler signal amplitude is justified theoretically and experimentally. The radius of glass spheres is measured (1.75 and 5 mm). The relative error of measurements is 1.1 and 8%. The radius of bubbles upfloating in a viscous liquid is measured. It is shown that the proposed method based on the Doppler anemometry offers prospects in studying two-phase flows.



Number: 2

4619.
NEW MICROELECTROMECHANICAL CAVITIES FOR GIGAHERTZ FREQUENCIES

E. G. Kostsov1, S. I. Fadeev2
1Institute of Automation and Electrometry, Siberian Branch, Russian Academy of Sciences, pr. Akademika Koptyuga 1, Novosibirsk, 630090 Russia
kostsov@iae.nsk.su
2Sobolev Institute of Mathematics, Siberian Branch, Russian Academy of Sciences, pr. Akademika Koptyuga 4, Novosibirsk, 630090 Russia
Keywords: microwave MEMS, microcavity, frequency generator, HF filter, natural oscillations
Subsection: PHYSICAL AND TECHNICAL PRINCIPLES OF MICRO- AND OPTOELECTRONICS

Abstract >>
A possibility of creating micrometer-sized microelectromechanical cavities operating at gigahertz frequencies is considered. A thin film of a dielectric (ferroelectric) with a high dielectric permeability and electric strength is included into the cavity structure. Specific features of device operation and its structure are described by a mathematical model that allows one to find exact relations between the parameters characterizing natural oscillations of the moving element and the triggering voltage.



Number: 2

4620.
METHODS AND RESULTS OF EXPERIMENTAL DETERMINATION OF THE THREE-DIMENSIONAL SHAPE OF OBJECTS BASED ON POLARIZATION THERMOGRAMS

a:2:{s:4:"TEXT";s:27:"V. M. Tymkul, Yu. A. Fes’ko";s:4:"TYPE";s:4:"text";}
Siberian State Academy of Geodesy, ul. Plakhotnogo 10, Novosibirsk, 630108 Russia
fantasy_2000@ngs.ru
Keywords: polarization, intrinsic thermal radiation, polarizer, three-dimensional shape, polarization thermogram
Subsection: PHYSICAL AND TECHNICAL PRINCIPLES OF MICRO- AND OPTOELECTRONICS

Abstract >>
Trends of increasing the informative content of the thermal imaging channel of optoelectronic observation devices are discussed, and a method of using the properties of the intrinsic polarized thermal radiation from objects to determine their three-dimensional shape is considered. The paper presents a model system for obtaining polarization thermal images and the mathematical model and results of experiments on the production and processing of polarization thermograms of objects and determination of their three-dimensional shape.




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