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MODELING RESULTS OF THE TURBULENT SURFACE LAYER ELECTRODYNAMIC STRUCTURE
О.V. Belousova, G.V. Kupovkh, А.G. Klovo, V.V. Grivtsov2022-11-01Abstract ▼The article presents the results of mathematical modeling of turbulent surface layer
electrodynamic structure. A model of a stationary turbulent electrode effect operating near the
earth's surface is used. The analysis of equations by methods of similarity theory allowed us to
make a number of reasonable physical assumptions that allowed us to obtain analytical solutions.
Analytical formulas have been obtained for calculating the profiles of concentrations of small ions
(aeroions), the density of the space electric charge and the electric field strength in a turbulent
electrode layer. As a result of mathematical modeling, the dependences electrical characteristics
in surface layer on the values of the electric field, the turbulent mixing degree and aerosol pollution
of the atmosphere are investigated. It is shown that the parameter of the electrode effect (the
ratio of the values of the electric field strength on the earth's surface and at the upper boundary of
the electrode layer) practically does not depend on atmospheric conditions, whereas the height of
the electrode layer and, accordingly, the scale of the distribution of the electrical characteristics
of the surface layer vary significantly. The intensification of turbulent mixing in the surface layer
leads to an increase in the height of the electrode layer and, as a consequence, the scale of distribution
of its parameters. The strengthening of the electric field or air pollution by aerosol particles of sufficient concentration leads to a decrease in its height. An increase in the concentration
of aerosol particles in the atmosphere reduces the values of the electric charge density at the
earth's surface. Theoretical calculations are in good agreement with experimental data and the
results of numerical modeling of the surface layer electrical structure. The analytical formulas
obtained in the work for calculating the electrical characteristics of the surface layer and the results
of calculations can be useful in solving a number of applied problems of geophysics, in particular
for monitoring the electrical state of the atmosphere. -
MODELING OF THE NON-TURBULENT SURFACE LAYER ELECTRODYNAMIC STRUCTURE
G.V. Kupovkh, A.G. Klovo, V.V. Grivtsov, О. V. Belousova2022-08-09Abstract ▼The article presents an electrodynamic model of the atmospheric surface layer caused by
the action of the electrode effect near the earth's surface, and an analysis of its equations by methods
of similarity theory. Mathematical models of the surface layer electrical state in the approximations
of the classical and turbulent electrode effect are considered separately. In the mathematical
formulation of modeling problems, a number of well-founded physical assumptions were created
that made it possible to obtain analytical solutions to the equations. Analytical formulas have
been obtained for calculating the profiles of aeroion concentrations, the density of the space electric
charge and the electric field in the electrode layer. As a result of mathematical modeling, the
dependences of the electrical characteristics distribution in the surface layer on the values of the
electric field, the degree of air ionization and aerosol pollution of the atmosphere are investigated.
It is shown that the ratio of the electric field values on the earth's surface and at the upper boundary
of the electrode layer is almost constant. The increasing of the electric field, the rate of air
ionization and the presence of sufficient concentration aerosol particles leads to a decrease in the
thickness of the electrode layer and, as a consequence, the scale of distribution of its parameters.
An amplification in the degree of ionization increases, and an increase in the concentration of
aerosol particles in the atmosphere decreases the values of the electric charge density in the surface
layer. Theoretical calculations are in good agreement with experimental data and the results
of numerical modeling of the surface layer electrical structure. The analytical formulas obtained
in the work for calculating the electrical characteristics of the surface layer and the results of
calculations can be useful in solving a number of applied problems of geophysics, in particular for
monitoring the electrical state of the atmosphere. -
EVALUATION OF THE STATE OF DYNAMIC WEIGHING BY THE KALMAN FILTER METHOD
Е.V. Zargaryan, Y.A. Zargaryan, А. Y. Nomerchuk2022-05-26Abstract ▼Currently, due to widespread computerization, the development of automated control systems
is relevant. Due to the development of small businesses, the purchase of commercially available
systems is a very expensive solution. It is possible to create similar control systems based on
inexpensive microprocessor kits (in this particular case, the K1816VE35 microprocessor kit is
used). In the future, such a system will not be difficult to improve, and it is also easy to implementinterfacing with various electronic computers (control from a personal computer). A system for
measuring and regulating bulk raw materials (an automated weighing system) is to be developed,
which provides control of the pneumatic transport automation with a 2-speed rotary dispenser,
through which bulk raw materials are fed to a weighing hopper suspended on a load-bearing device.
Measuring the weight of the bulk mass in the hopper of the scales, followed by automatic
control of unloading of bulk raw materials from the hopper. The profitability of any industrial
operation involving the weighing of raw materials, work in progress and finished products directly
depends on the accuracy of the weight data. However, even when using high-precision weighing
equipment, the method of collecting, recording and processing weight data for the micro ingredients
system may be subject to errors and inaccuracies. This can cause a potential revenue drain
that is difficult to detect and verify. In many cases, it is assumed that the cause of the problem is
related to the weighing equipment, whereas in fact it is related to the traditional data collection
and management system. In many factories where bulk products are mixed in batches, dosing
scales is a manual, time-consuming operation in which the ingredients are weighed separately
before loading into a blender or other technological container. A significant number of such plants
can benefit from the installation of an automated weighing and dosing system. -
COMPUTATIONAL ASPECTS OF SOLVING GRID EQUATIONS ON GRAPHICS ACCELERATORS
N.N. Gracheva, V.N. Litvinov, N.B. Rudenko, A.V. Nikitina, А. Е. Chistyakov2021-12-24Abstract ▼To predict emergencies and irreversible consequences of human activities, scientists use
mathematical modeling. When an emergency occurs, it is very important to minimize the decisionmaking
time. The development of the project solution can be based on the forecast of changes in
the modeled process. In the numerical solution of problems of hydrophysics and biological kinetics,
it becomes necessary to develop effective methods for solving systemic equations of large dimension
with a non-self-adjoint operator. The large volume of processed information and the
complexity of computations necessitate the use of computational clusters, which include video
adapters to increase the performance of the computing system and the speed of information processing.
The aim of the research is to develop a solution for a module that implements the algorithm
of the system of linear algebraic equations (SLAE) by the modified alternative triangular
iterative method (MATM) (self-adjoint and non-self-adjoint case) using NVIDIA CUDA technology.
A method for decomposition of the computational domain in a three-dimensional case is described.
A graph model of a parallel pipeline computational process is proposed, focused on the
GPU (Graphics Processing Unit). To determine the two-dimensional configuration of flows in the
computational unit, when performing one step of one step, the MATM is minimal. The studies have
shown that the choice of the method of decomposition of the computational domain in the form of
parallelepipeds must be performed taking into account the architecture of the video adapter. The
developed algorithm and software module make it possible to more effectively use the computational
resources of the GPU used to solve computationally laborious problems of hydrophysics. -
DEVELOPMENT AND ANALYSE VISUAL NAVIGATION SYSTEM FOR AIR AND GROUND-BASED ROBOTS
V. P. Noskov, Y. S. Barichev, О.P. Goydin, А.N. Kuryanov2025-04-27Abstract ▼The work is devoted to solving urgent problems of joint autonomous visual navigation for air and
ground-based robots in urbanized environments. These environments are highly demanded for special
operations, including dense urban areas and buildings, where the use of traditional remote control devices
is limited due to the presence of shielded areas. The proposed solution addresses group navigation tasks
based on data from onboard vision systems during operational reconnaissance of the working area by an
unmanned aerial vehicle (UAV). The results of this reconnaissance enable autonomous movement and
flight, both for individual heterogeneous robotic systems and for groups.The navigation algorithms are
based on methods for extracting a horizontal reference surface and horizontal sections of the external
environment from a volumetric point cloud generated by an onboard lidar. These methods allow for the
precise and rapid determination of all six coordinates of the control object. Cases where the navigation
task cannot be fully solved due to specific environmental characteristics are also considered. To address these challenges, methods are proposed to enhance lidar rangefinding data by integrating video camera
data. An accuracy assessment of the video navigation solutions is provided, obtained through mathematical
modeling of the external environment and the generation of video data. To ensure safe autonomous
flight and movement of robotic systems in urban environments, methods for reducing video navigation
errors are proposed. These methods utilize a specially designed bank of reference images with known
coordinates of their formation. The effectiveness of the applied methods and the proposed video navigation
algorithms is confirmed by experimental studies of the corresponding software and hardware in real
urbanized environments -
THE MODULE FOR PREDICTING CONVERTER PARAMETERS BASED ON SPECIFIED AMPLITUDE-FREQUENCY CHARACTERISTICS
V.I. Shlaev93-1032025-11-10Abstract ▼The article discusses the solution of the problem of developing converters based on specified amplitude-frequency characteristics. The main problem is to carry out a large number of measuring measures with changes in the parameters of the transducers to achieve the necessary amplitude-frequency characteristics, which leads to high time and resource costs for development. The analysis of the main parameters of the converters affecting the specified amplitude-frequency characteristics is carried out. The existing approaches, methods and algorithms for creating converters of the required characteristics are analyzed. The development of a module for predicting the parameters of electromechanical converters based on specified amplitude-frequency characteristics is described. The research objectives include the creation of structural-parametric and mathematical models for calculating the characteristics of converters at the design stage. An algorithm for training a model based on experimental data obtained during measurements is described. The use of machine learning methods to predict parameters minimizes the number of experiments performed and reduces the cost of developing converters. The proposed approach is based on the use of the relationship between the design parameters of the converters and their frequency characteristics. The gradient boosting algorithm is used to increase the accuracy of forecasting. The stages of data preparation for model training are presented. The learning process of the model is described. The results demonstrate a significant reduction in the modeling time of the converters: the use of the module makes it possible to speed up the process several times compared with the experimental approach. Predicting characteristics based on a model provides comparable accuracy with a larger amount of data. The findings of the study confirm the effectiveness of the proposed approach in the development of converters, reducing time and financial costs, increasing the accuracy of modeling and applicability in conditions of limited resources.
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THE TECHNIQUE FOR SPLINE APPROXIMATIONS BUILDING IN CONDITIONS OF LIMITED SOURCE DATA
А.А. Dorofeev90-1052025-12-30Abstract ▼Mathematical modeling is widely applied in different fields of activity but in cases when the available numerical information is insufficient to get a complete picture of the object mathematical model building is difficult or can lead to a deliberately unreliable result. There are approaches to solving modeling problems with a lack of data therewith it may be necessary to use methods with complicated mathematical structure to get the desired result. In this regard, the task of adapting mathematical methods to data scarcity conditions is relevant. This paper discusses the solution of the interpolation problem using spline functions as one of the most widely used methods in mathematical theory and applied mechanics. A technique has been developed to adapt spline methods to data shortage conditions, applying this technique to building of a cylinder with elliptical bottoms forming model provided smooth joining of fragments and absence of kinks. Meeting the requirements of precision and smoothness of the model was achieved by sequential refinement of numerical data with adding interpolation nodes to the model and correction of their location. As a result of building and analysis of the model it was found that spline methods can be applied to solving interpolation problems of almost any complexity. The availability of an analytical justification for every step of modeling process allows to automate the process fully. The problem considered in the article is connected with manufacturing products on the numerically controlled machines. However, this technique due to its versatility can be applied to solving problems in various fields of activity.
The practical value of the developed technique is the possibility of its application to many practical tasks. Its integration into modern CAD systems and application software packages will allow to expand their functionality by providing the user with the possibility to introduce the extra restrictions imposed on the model practically what can ensure a high degree of implementation flexibility. -
GLOBAL AND LOCAL VARIATIONS OF THE ELECTRIC FIELD IN THE SURFACE ELECTRODE LAYER
О. V. Belousova180-1902026-09-10Abstract ▼The paper presents a mathematical model of the atmospheric surface electrode layer structure, taking into account the combined action of global and local electric field generators. Spatiotemporal modeling is based on the conjugation of harmonic trigonometric functions of the diurnal cycle for local turbulent exchange and for the global total current density. When modeling the behavior of the electric field, analytical solutions of the electrode effect equations in the atmosphere are used. The proposed approach consists of a step-by-step substitution of the total electric current density and the turbulent diffusion coefficient instantaneous values, obtained from the equations of their periodic variation for a specific hour of the day, into analytical formulas for the stationary spatial distribution of the turbulent electrode layer characteristics. The validity of using the quasi-stationary approximation is strictly substantiated by the significant difference (by more than two orders of magnitude) between the time scales of establishing electrical equilibrium in the medium and the period of the global current generator diurnal variation. It was established that the combined modeling mode adequately reproduces the synergistic expansion of the electric field strength (potential gradient) diurnal curve range and the deformation of its profile, characteristic of the summer season in the high mountains. The reliability of the obtained theoretical results was confirmed by their comparison with experimental data from in-situ measurements at the alpine station of Peak Cheget (430 16' N and 420 30' E), located in the Elbrus region at altitudes of 3040 m above sea level.
The analysis demonstrated good quantitative and chronological agreement between the calculated extremes values and the observed diurnal variations in electric field during the summer season. The results obtained can be directly used to improve the accuracy of geophysical monitoring data interpretation








