F. V. Perederin

ORCID: 0000-0001-7670-3851
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About
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Research Areas
  • earthquake and tectonic studies
  • Earthquake Detection and Analysis
  • Geomagnetism and Paleomagnetism Studies
  • Geological Studies and Exploration
  • Advanced Computational Techniques and Applications
  • Image Processing and 3D Reconstruction
  • 3D Surveying and Cultural Heritage
  • Geotechnical and Geomechanical Engineering
  • Geochemistry and Geologic Mapping
  • Geophysical and Geoelectrical Methods
  • Geophysics and Gravity Measurements
  • Geological Modeling and Analysis
  • Inertial Sensor and Navigation
  • Marine and environmental studies
  • High-pressure geophysics and materials
  • Robotics and Sensor-Based Localization
  • Geodetic Measurements and Engineering Structures
  • Remote Sensing and LiDAR Applications
  • Particle Detector Development and Performance
  • Satellite Image Processing and Photogrammetry
  • Methane Hydrates and Related Phenomena
  • Geology and Paleoclimatology Research
  • Seismic Imaging and Inversion Techniques
  • Infrastructure Resilience and Vulnerability Analysis
  • Seismology and Earthquake Studies

Schmidt Institute of Physics of the Earth
2014-2024

Institute of Mechanics
2023

International Institute for Applied Systems Analysis
2016

Geophysical Center
2016

National University of Science and Technology
2016

Russian Academy of Sciences
2015

Here we describe an integrated software and hardware solution for stationary geomagnetic observations.The provides a feature-rich way to perform data acquisition wide range of use cases, including poor transfer conditions power limited environments.Data is implemented with widespread Seedlink protocol, which features small overhead automatic recovery missed fragments.Geophysical application stations often implies installation at sites that are hard-to-reach or only accessible on non-regular...

10.2205/2016es000582 article EN Rossijskij žurnal nauk o zemle/Russian journal of earth sciences 2016-11-21

An algorithm for identifying seismic generation zones or “seismic domains” using fuzzy logic has been developed and tested on the island of Sakhalin. Initial data were obtained from diagrams distribution “weak” zones, relief elevation skewness, magnitude recent area deformation one year. These processed a γ-operator in with γ = 0.9, which allowed us to identify areas high activity. The where these active intersect increased compressive stress values, as determined by computer modeling,...

10.2205/2024es000906 article EN Rossijskij žurnal nauk o zemle/Russian journal of earth sciences 2024-05-06

<title>Abstract</title> An algorithm for identifying seismic generation zones or “seismic domains” using fuzzy logic has been developed and tested on the island of Sakhalin. Initial data were obtained from diagrams distribution "weak" zones, relief height skewness, magnitude recent area deformation one year. These processed a γ-operator in with γ=0.9, which allowed us to identify areas high activity. The where these active intersect increased compressive stress values, as determined by...

10.21203/rs.3.rs-5220337/v1 preprint EN cc-by Research Square (Research Square) 2024-10-10

Based on the data from GNSS sites located in Fennoscandia, for period mid-1990s to present, an analysis of region’s geodynamics was carried out. For first time, extended set used, including field observations Satellite Methods Laboratory Studying Geophysical Processes IPE RAS and fundamental astronomical geodetic network. It enabled expanding area post-glacial rebound modeling eastern part Fennoscandia. As many previous studies, a vertical velocity obtained with maximum uplift rate 10...

10.22389/0016-7126-2022-980-2-26-36 article EN Geodesy and Cartography 2022-03-17

Our structural-geomorphological and morphometric studies have shown that seismically active areas of Sakhalin Island are distinguished by positive anomalies 9 parameters the relief, where their values exceed median. These include difference between hypsometric surface 3rd order base surface; differences 1st 2nd orders, orders surfaces; depth vertical dissection; standard deviation slope exposure; density “weak” zones; height asymmetry, Gaussian curvature taken module heights. It is can also...

10.55959/msu0579-9406-4-2024-63-6-32-41 article EN Moscow University Bulletin Series 4 Geology 2024-01-01

Описан опыт проведения площадной съёмки с применением мультироторного беспилотного летательного аппарата на экспериментальном загородном полигоне ВлГУ площадью 4.5 га, расположенном в 25 км от г. Владимира. Проводились методические работы: измерения геомагнитного поля и аэрофотосъёмка мультиспектральной камерой. Аэромагнитная съёмка была дополнена стационарными наблюдениями пешими измерениями. Приведены технические параметры оборудования, особенности его применения при низкой температуре...

10.26006/29490995_2023_15_2_89 article RU cc-by Deleted Journal 2023-08-03

This paper describes an online realtime data acquisition system.The design utilizes ARM singleboard computers that bring very low power requirements, portability and lightweightness.We have implemented a unified approach to acquire, transfer store the measurements.The takes advantages of SeedLink protocol establish flows between components system.Communication over IPv4 rely on secure virtual private networks.The system features remote management logger all connected devices.For purposes...

10.18358/np-28-3-i513 article EN NAUCHNOE PRIBOROSTROENIE 2018-08-29

The field of the contemporary deformation North-Western Caucasus and Ciscaucasia is described based on GNSS horizontal movement data. It shown that velocity sufficient for activation large-scale faults region to be followed by seismic events with a moment magnitude up 7.0. Yet, orogenic uplift at rate 12 mm/yr development its varied, deep-broken relief cannot explained only effect external stresses. These processes are conditioned, great extent, internal isostatic forces.

10.31857/s0002333723040117 article EN Физика земли 2023-07-01
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