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Матвеев Александр Львович
Старший научный сотрудник, к.ф.-м.н.
Центр гидроакустики
Родился в 1952г. в г. Горький (Н.Новгород), женат
Образование:
Область научных интересов:
- Подводная гидроакустика
- Обнаружение и оценка параметров
- Оптимальная обработка сигналов
- Нелинейная акустика
- Оптическая когерентная томография и эластография
Награды, гранты:
- Почётная грамота РАН за содействие развитию фундаментальных и прикладных научных исследований (2004 г.
- Руководитель и участник международных (CRDF, INTAS) и большого количества российских (РНФ, РФФИ, Правительства РФ и др.) научных грантов.
Публикации:
Более 120, в том числе более 50 статей в рецензируемых научных журналах. 8 патентов.
Наиболее значительные работы и результаты (с 1995 года):
- V.A.Zverev, A.L.Matveev, and V.V.Mityugov. Matched filtering of acoustic diffraction signals for incoherent accumulation with a vertical antenna. Acoustical Physics. V.41, No.4, pp.518-521 (1995).
- Abrosimov D.I., Erkin A.F., Kazarova A.Yu., Kapustin P.A., Matveev A.L., Nechaev A.G., Potapov A.I., Stromkov A.A., Shargaev K.A. Identification of ray arrivals in the acoustical tomography with a moving receiver. Acoustical Physics. V. 41, No.4, pp.556-558 (1995).
- A.B.Gershman, A.L.Matveyev and J.F.Boehme. Maximum Likelihood Estimation of Signal Power in Sensor Array in the Presence of Un-known Noise Field. IEE Proc. Radar, Sonar, and Navigation, vol.142, no.5, October 1995, pp.218-224. DOI: 10.1049/ip-rsn:19952141
- L.A.Ostrovsky, A.M.Sutin, I.A.Soustova, A.L.Matveyev, A.I.Potapov. Nonlinear, low-frequency sound generation in a bubble layer: Theory and laboratory experiment. Journal of the Acoustical Society of America, 1998, Vol.104, No.2, Pt.1, P.722-726. DOI:10.1121/1.423308
- A.L.Matveyev, A.B.Gershman, J.F.Boehme. On the direction estimation Cramer-Rao bounds in the presence of uncorrelated unknown noise. Circuits, Systems, and Signal Processing, Vol.18, No.5, 1999, pp.479-487. DOI 10.1007/BF01387467
- A.L.Matveev and V.V.Mityugov. Complex matched filtering of dif-fraction sound signals received by a vertical array. Acoustical Physics, Vol.46, No.1, 2000, pp.80-86. DOI:10.1134/1.1507202
- V.A.Zverev, P.I.Korotin, A.L.Matveev, V.V.Mityugov, D.A.Orlov, B.M.Salin, and V.I.Turchin. Experimental studies of sound diffraction by moving inhomogeneities under shallow-water conditions. Acoustical Physics, Vol.47, No.2, 2001, pp.184-193. DOI:10.1134/1.1355803
- L.Ostrovsky, A.Lebedev, A.Matveyev, A.Potapov, A.Sutin, I.Soustova, and P.Johnson. Application of three-dimensional resonant acoustic spectroscopy method to rock and building materials. JASA, Vol. 110, No. 4, pp.1770-1777, October 2001. DOI:10.1121/1.1402255
- A.Sazontov, A.Matveyev and N.Vdovicheva. Acoustic coherence in shallow water: theory and observation. IEEE Journal of Oceanic Engineering, Vol. 27, No. 3, July 2002, pp. 653-664. DOI: 10.1109/JOE.2002.1040948
- L.A.Ostrovsky, A.L.Matveyev, A.I.Potapov, A.M.Sutin, I.A.Soustova, Z.Kluzek. Nonlinear Scattering of Acoustic Waves by Natural and Artificially Generated Subsurface Bubble Layers in Sea. Journal of the Acoustical Society of America, 2003, V.113, No.2, pp.741-749 (February 2003). DOI:10.1121/1.1526497
- A.L.Matveev, D.A.Orlov, A.A.Rodionov, B.M.Salin, and V.I.Turchin. Comparative Analysis of Tomographic Methods for the Observation of Inhomogeneities in a Shallow Sea. Acoustical Physics, 2005, vol.51, No.2, pp.218-229. DOI 10.1134/1.1884497
- A.L. Matveev, R.C. Spindel, and D. Rouseff.. Forward scattering observation with partially coherent spatial processing of vertical array signals in shallow water. IEEE Journal of Oceanic Engineering, Vol.32, No.3, July 2007, p.626-639. DOI: 10.1109/JOE.2007.897071
- V.Yu.Zaitsev, L.A. Matveev, A.L. Matveyev. On the ultimate sensitivity of nonlinear-acoustic methods of crack detection. NDT&E International, Volume 42, Issue 7, October 2009, P.622-629. (impact factor 1.198), ISSN 0963-8695 DOI: 10.1016/j.ndteint.2009.05.001
- V.Yu.Zaitsev, L.A. Matveev, A.L. Matveyev. Elastic-wave modulation approach to crack detection: comparison of conventional modulation and higher-order interactions. NDT&E International, Volume 44, Issue 1, 2011, P.21-31. (impact factor 1.744), ISSN 0963-8695. DOI:10.1016/j.ndteint.2010.09.002
- V.Yu. Zaitsev, L.A. Matveev, G.V. Gelikonov, A.L. Matveyev, and V.M. Gelikonov. A correlation-stability approach to elasticity mapping in optical coherence tomography. Laser Physics Letters, 10(6), 065601(1-5) (2013). DOI: 10.1088/1612-2011/10/6/065601
- V.Y. Zaitsev, L.A. Matveev, A.L. Matveyev, G.V. Gelikonov, and V.M. Gelikonov. Elastographic mapping in optical coherence tomography using an unconventional approach based on correlation-stability. Journal of Biomedical Optics, 19(2), 021107 (February 2014), pp. 021107-1 - 021107-12. DOI: 10.1117/1.JBO.19.2.021107
- A.G. Sazontov, I.P.Smirnov, and A.L.Matveev. Source Localization in a Shallow-Water Channel with a Rough Surface. Acoustical Physics, January 2015, Volume 61, Issue 1, pp 109-116. DOI: 10.1134/S1063771015010121
- L.A.Matveev, V.Y.Zaitsev, G.V.Gelikonov, A.L.Matveyev, A.A.Moiseev, S.Y.Ksenofontov, V.M.Gelikonov, M.A.Sirotkina, N.D.Gladkova, V. Demidov, and A. Vitkin. Hybrid M-mode-like OCT imaging of three-dimentional microvasculature in vivo using reference-free processing of complex valued B-scans. Optics Letters, Vol.40, No.7 1472-1475 (April 1, 2015). DOI:10.1364/OL.40.001472
- V.Y. Zaitsev, A.L. Matveyev, L.A. Matveev, G.V Gelikonov, E.V. Gubarkova, N.D. Gladkova and A. Vitkin. Hybrid method of strain estimation in optical coherence elastography using combined sub-wavelength phase measurements and supra-pixel displacement tracking. Journal of Biophotonics V.9, No.5, 499-509 (2016). DOI:10.1002/jbio.201500203
- V.Yu.Zaitsev, A.L.Matveyev, L.A.Matveev, G.V. Gelikonov, A.A.Sovetsky, Alex Vitkin. Optimized phase gradient measurements and phase-amplitude interplay in optical coherence elastography. Journal of Biomedical Optics, V.21 (2016), No.11, pp.116005(1-12). DOI:10.1117/1.JBO.21.11.116005
- V.Yu.Zaitsev, A.L.Matveyev, L.A.Matveev, G.V.Gelikonov, A.I. Omelchenko, D.V.Shabanov, O.I.Baum, V.M.Svistushkin and E.N. Sobol1. Optical coherence tomography for visualizing transient strains and measuring large deformations in laser-induced tissue reshaping . Laser Physics Letters V.13 (2017), No.11, pp.115603(1-8). DOI:10.1088/1612-2011/13/11/115603
Патенты:
- Е.С.Ерилин, А.Л.Матвеев, В.Е.Назаров, А.И.Потапов, А.М.Сутин, А.Л.Фогель, В.А.Чижов. Способ обнаружения трещин в твердом теле. Патент на изобретение N 2219538, Бюл. № 35, 2003 г.
- Моисеев А.А., Геликонов Г.В., Геликонов В.М., Ксенофотов С.Ю., Зайцев В.Ю., Матвеев А.Л., Матвеев Л.А., Загайнова Е.В., Карабут М.М., Сироткина М.А., Гладкова Н.Д., Виткин И.А. Способ визуализации областей объекта, содержащих микродвижения. Патент РФ № 2626310, Бюл. № 21, 2017 г.
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