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Izvestiya SFedU
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ISSN 1999-9429 print
ISSN 2311-3103 online
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  • MODERN APPROACHES TO SOLVING THE 3D BIN PACKING PROBLEM

    М.М. Sorokin , L. А. Gladkov , N. V. Gladkova
    131-150
    2026-09-10
    Abstract ▼

    The article is devoted to the consideration of current trends and approaches to solving the urgent optimization problem of three-dimensional bin packing problem. The importance of building effective methods for solving this problem is due to the rapid growth of e-commerce, where achieving even incremental improvements in container filling density can lead to significant reductions in freight transportation and storage costs. The article provides an analysis of various types of problems and suggests a classification of bin packing problems according to various criteria, including: offline and online packing, by dimension, by type and quantity of containers and cargo. The formulation of the classical optimization knapsack problem is given and various options for constraints due to the specifics of the tasks being solved are considered. A brief overview of the main approaches to solving the problem is given. The analysis and generalization of the characteristic features of the application of metaheuristic approaches based on the use of evolutionary and bioinspired algorithms and machine learning methods is carried out, their advantages and disadvantages are noted. Due to the complexity of the problem under consideration, it is proposed to actively use known and develop new modifications of metaheuristic algorithms that make it possible to find quasi-optimal solutions in polynomial time. The analysis of known machine learning methods and bioinspired algorithms is given, the principles of their operation are described, their main features, advantages and disadvantages are highlighted, and the prospects for their development and application to solve NP-complete combinatorial optimization problems are noted. A generalized principle of operation of metaheuristic algorithms is given. A comparative analysis of the application of various optimization methods has shown the effectiveness of using metaheuristic methods to solve the problem of three-dimensional packaging.

  • HYBRID APPROACH THE JOINT SOLUTION OF PLACEMENT AND TRACING PROBLEMS

    L.A. Gladkov , N. V. Gladkova , Dzhabbar Yasir Yasir Mukhanad
    2020-11-22
    Abstract ▼

    The article proposes an integrated approach to solving the problems of placing and tracing elements
    of circuits of electronic computing equipment. The approach is based on the joint solution of
    placement and tracing problems using fuzzy genetic methods. A description of the problem under
    consideration is given and a brief analysis of existing approaches to its solution is performed. The
    article discusses integrated approaches to solving optimization problems of computer-aided design of
    digital electronic computing equipment circuits. The urgency and importance of developing new
    effective methods for solving such problems is emphasized. It is noted that an important direction in
    the development of optimization methods is the development of hybrid methods and approaches that
    combine the advantages of various methods of computational intelligence. The article describes the
    following main points: the structure of the proposed algorithm and its main stages; modified genetic
    crossover operators; models for the formation of the current population are proposed; modified heuristics,
    operators and strategies for finding optimal solutions. The results of computational experiments
    are presented. The experiments carried out confirm the effectiveness of the proposed approach.
    In conclusion, a brief analysis of the results obtained is given.

  • EVOLUTIONARY DESIGN AS A TOOL FOR DEVELOPING MULTI-AGENT SYSTEMS

    L. A. Gladkov, N. V. Gladkova
    2021-11-14
    Abstract ▼

    The article is devoted to the discussion of the problems of constructing evolving multi -
    agent systems. Possible methodologies for designing multi-agent systems are considered. The
    relevance of developing new principles for constructing multi -agent systems based on evolutionary
    design methods is noted. The correspondences between the terms of the theory of
    agents and the theory of evolution are highlighted. The prospects of using hybrid approaches
    to the design of multi-agent systems are noted. The principles of construction and the poss ibility
    of using fuzzy genetic algorithms in the design of multi -agent systems are considered.
    It is suggested that the models and methods of the theory of evolutionary modeling can be
    successfully applied in the design of multi-agent systems. An evolving multi-agent system is
    proposed. The procedure for the formation of new agents in the process of evolution is described.
    The set of parameters for assessing the state of each agent in the population has
    been determined. The resource parameters are proposed to be used to assess the current state
    of the agent and the possibilities of its interaction with other agents. The definitions of an
    agency and a family, the minimum elements of an evolving multi -agent system are given. An
    evolutionary strategy for constructing a model of an evolving multi -agent system is proposed.
    The procedures for the execution of the original evolutionary operators for processing the
    population of agents are described. Based on the proposed methodology, a software system
    for supporting the evolutionary design of agents and multi-agent systems was developed. Atpresent, computational experiments are being carried out to study the proposed design model
    for multi-agent systems, as well as to evaluate the effectiveness of various operators and
    schemes for the formation of descendant agents, the necessary conditions for survival.

  • DEVELOPMENT OF AN AGENT-BASED ALGORITHM FOR SOLVING SYSTEMS OF LINEAR ALGEBRAIC EQUATIONS OF LARGE DIMENSION

    D.А. Bereza, L. А. Gladkov, N. V. Gladkova
    2025-01-30
    Abstract ▼

    Solving systems of linear algebraic equations (SLAE) is one of the most important fundamental tasks in
    the development of a new generation of design systems in various fields of science and technology. The relevance
    of this study is due to the growing volume of data and the increasing complexity of tasks. Traditional
    methods for solving of SLAE, such as the Gauss method, the run-through method, iterative methods (Jacobi
    method, Seidel method, etc.), have proven themselves well when working with relatively small systems. However,
    when solving large-dimensional of SLAE, these methods are not efficient enough due to high computational
    costs and memory requirements. One of the promising approaches to solving problems of high complexity
    is the use of agent-based systems. Agent-based systems offer a new way of organizing computing processes
    based on the interaction of independent agents, each of whom performs a specific part of the task. This
    approach allows for more flexible allocation of computing resources and efficient solution of complex tasks
    in a big data environment. A method for solving equations describing a mathematical model of a circuit is
    presented, taking into account the optimization of the ratio between the accuracy of calculations and the time
    of their execution. In this paper, we propose an agent-based algorithm for solving systems of linear algebraic
    equations of large dimension. During the development of this algorithm, an analysis of existing methods and
    algorithms for solving of SLAE was carried out, their advantages and disadvantages were identified. An
    agent-oriented architecture was developed to solve large-scale of SLAE, the organization of agent interaction
    and mechanisms for distributing tasks between them were proposed. A software implementation of the developed
    algorithm was performed. To evaluate the effectiveness of the proposed approach, it was tested on a
    number of test tasks. The performance and scalability of the developed algorithm were also evaluated, and it
    was compared with traditional methods for solving of SLAE.

  • ALGORITHM FOR SYNTHESIS OF COMBINATIONAL LOGIC CIRCUITS BASED ON THE EVOLUTIONARY APPROACH

    L.А. Gladkov, N.V. Gladkova
    2024-01-05
    Abstract ▼

    The emergence of new technologies for manufacturing components of digital electronic devices
    has led to the need to improve the efficiency of computer-aided design methods. Increasing
    requirements for elements causes an increase in the size of the problems being solved. To solve
    problems that were previously impossible to automate, new methods and software applications are
    being developed. Specialists are faced with the task of developing fundamental principles for constructing
    next-generation design systems. The development of devices with such characteristics as
    reliability, survivability, and automatic damage repair is an urgent task. This paper proposes an
    approach to solving the problem of synthesizing combinational circuits based on the use of evolutionary
    design methods. Evolutionary design of a technical system refers to the purposeful use of
    computer models of evolution at all stages of system development. The goal is to enable fully automatic
    design. The main idea of self-reconfigurable hardware systems is to replace generalpurpose
    hardware systems with systems that can adapt to the specifics of the software being executed.
    The synthesis of a programmable circuit is based on the principle of “bottom-up” design –
    from the lowest to the highest level. This allows you to configure the hardware individually by
    programming logic elements. To implement this task, evolutionary algorithms are used. Logic
    functions can be described by combinational circuits. One of the advantages of combinational
    circuits is their high performance. The task is to develop the structure of a combinational logic
    circuit based on a given truth table and nomenclature of logical elements. The work proposed an
    evolutionary algorithm for the synthesis of combinational logic circuits. A technique for encoding
    alternative solutions and modified evolutionary operators for synthesizing new solutions were
    developed. A software implementation of the proposed algorithm has been completed. The computational
    experiments carried out confirmed the correctness of the chosen approach. The use of
    evolutionary methods for the synthesis of combinational logic circuits makes it possible to increase
    the intelligence of design systems.

  • SUBSYSTEM FOR AUTOMATIC TEXT ANNOTATION BASED ON MACHINE LEARNING METHODS

    L.А. Gladkov, N. V. Gladkova, V.М. Kureichik
    2023-12-11
    Abstract ▼

    This paper considers the problem of automatic text annotation. The formulation of the problem
    is considered. The relevance and importance of developing effective methods and software
    systems for solving the problem of automatic text summarization in modern information systems is
    substantiated. Definitions of the concepts “data” and knowledge are given.” A list of tasks related
    to the Data Mining direction is described. The Text Mining problem and existing methods for solving
    it are described in detail. The problem of summarizing texts is considered. The main stages of
    solving the summation problem are highlighted. The main methods of automatic text processing
    are described, their advantages and disadvantages are highlighted. Abstractive summarization
    and extractive summarization methods are discussed in detail. A comparative analysis of the effectiveness
    of various abstracting and quasi-abstracting methods has been carried out, their key advantages
    and disadvantages have been highlighted. A brief description of the encoder-decoder
    architecture is given from the point of view of using this architecture in the developed algorithm for automatic text summarization. A description of the model of recurrent neural networks is given,
    the advantages and disadvantages of such models are noted. The architecture of a recurrent
    neural network is considered in relation to solving the problem of automatic text summarization. A
    description of the modified model of a recurrent neural network – a neural network with long
    short-term memory – is given. A description of the proposed automatic abstracting algorithm and
    the settings of its main parameters are given. A description of the developed automatic abstracting
    software subsystem is given. Computer modeling is performed and the results obtained during
    computational experiments are presented. The quality of the solutions obtained was assessed. The
    optimal parameters of the developed software system are determined. Directions for continuing
    research are formulated.

  • INTEGRATED MODEL FOR SOLVING THE PROBLEM OF REQUEST DISPATCHING

    А.E. Saak, L.A. Gladkov, N.V. Gladkova
    2023-02-17
    Abstract ▼

    The paper considers the problem of scheduling. The paradigm of organization of distributed
    computing based on Grid-computing is considered. The classification of task scheduling systems is
    given. Various approaches to solving the scheduling problem are described. A model of the task of
    servicing applications based on the principles of the theory of queuing systems is presented. The
    task statement is formulated on the basis of Grid-scheduling. The concept of a resource rectangle
    is proposed. The environment for scheduling resource rectangles is defined. A model is proposed
    that allows formalizing the user's request for service by the concept of a resource (non-Euclidean)
    rectangle. Instead of the principle of optimization based on the machine search for the best distribution
    of the array of resource rectangles, a heuristic principle was proposed, which made it possible
    to reduce the amount of necessary calculations. The proposed heuristic scheduling algorithm
    makes it possible to take into account the properties of the array and evaluate the quality of solutions.
    Models of the demand environment in the form of single cubic faces are constructed.
    The model of cubic faces is generalized to the experiment of cubic layers. The description of the
    demand model used is given. A model of the resource supply environment in the form of a canonical
    pyramid is constructed and the concept of a canonical demand-supply experiment for model
    homogeneous resource elements is introduced. A truncation of the supply-demand experiment has
    been introduced. A hybrid model based on a combination of evolutionary search principles and
    fuzzy control methods is proposed. To solve scheduling problems, it is proposed to use evolutionary
    algorithms. A modified solution coding technique and new modifications of genetic operators
    for solving scheduling problems have been developed. A block diagram of the algorithm for solving
    the problem under consideration is presented, taking into account the use of a fuzzy logic controller.
    Computer simulation has been performed and the results of computational experiments
    have been presented. The features of the proposed method are revealed, its advantages and disadvantages
    are formulated.

  • SOLUTION OF THE ELEMENTS LOCATION PROBLEM IN DIGITAL COMPUTER EQUIPMENT ON THE BASIS OF INTEGRATION OF EVOLUTIONARY SEARCH AND FUZZY CONTROL METHODS

    Yasir Mukhanad Dzhabbar Yasir, L.A. Gladkov, N.V. Gladkova
    2023-02-17
    Abstract ▼

    The problem of elements placement in digital computing equipment are consider in the article.
    The analysis of the current state of research on this topic is carried out, the relevance of the
    problem under consideration is noted. The importance of developing new effective methods for
    solving engineering design problems is emphasized. The prospects of developing and using hybridapproaches and models for solving complex semi-formalized design and optimization problems are
    noted. The statement of the problem of placement of circuit elements of digital computing equipment
    is given. The importance of a qualitative solution of the placement problem from the point of view of
    the successful implementation of the subsequent stages of design is noted. The analysis of various
    approaches and algorithms for solving the placement problem is carried out. Options for choosing
    various criteria for assessing the quality of placement are given. A complex additive criterion for
    assessing the quality of placement is proposed. The objective function and limitations of the considered
    placement problem as an optimization problem are given. A hybrid approach to solving the
    placement problem is proposed. To increase the efficiency and reduce the running time of the algorithm,
    a model of a parallel multipopulation genetic algorithm is proposed. To synchronize evolutionary
    processes in a multipopulation genetic algorithm, a modified migration operator has been
    developed. An analysis of the efficiency of the proposed migration operator has been carried out and
    recommendations for its use have been formulated. In order to increase the speed of the algorithm for
    solving the placement problem, a model for organizing parallel evolutionary computations through
    the use of multithreading at the local level is proposed. The principles of operation of the fuzzy control
    module are described. The procedure of logical inference using the rule base is described.
    The structure of a multilayer neural network that implements the Gaussian function is proposed.
    A model of a fuzzy logic controller for dynamically changing the values of control parameters of a
    genetic algorithm is proposed. The control parameters of the fuzzy logic controller are determined.
    The proposed hybrid algorithm is implemented as an application program. A series of computational
    experiments were carried out to determine the efficiency of the developed algorithm and to select the
    optimal values of the control parameters.

  • HYBRID METHOD FOR SOLVING THE PROBLEM OF PLACEMENT OF DIGITAL COMPUTER DEVICES

    L. A. Gladkov , N. V. Gladkova , M.J. Yasir
    2021-11-14
    Abstract ▼

    The problem of placing elements of digital computing technology is considered in the article.
    The analysis of the current state of research on this topic is carried out, the relevance of the
    problem under consideration is noted. The importance of developing new effective methods for
    solving such problems are highlighted. The place of the placement problem in the general cycle ofthe design stage is shown. The importance of a high-quality solution to the placement problem
    from the point of view of the successful implementation of subsequent design stages is noted. The
    importance of minimizing connection delays in the design process of large-scale devices is noted.
    A review and analysis of various models and criteria for evaluating the solution to the placement
    problem is carried out. It was emphasized that the most important criterion is the length of the
    joints, it has a significant impact on the technologies used in the design. A complex mathematical
    formulation of the problem of placing elements of digital computing equipment has been completed.
    Perspective approaches to solving design problems are analyzed, hybrid methods and models
    for solving complex multicriteria optimization and design problems are described. The principles
    of operation and the model of a fuzzy logic controller are described. The description of the used
    fuzzy control scheme is given. The functions of various blocks of a fuzzy logic controller are determined.
    The structure of a multilayer neural network that implements the Gaussian function is
    proposed. The interaction of blocks of a fuzzy genetic algorithm is described. A model of a hybrid
    algorithm for solving the placement problem is proposed. The control parameters of the fuzzy
    logic controller are determined. The proposed hybrid algorithm is implemented as an application
    program. A series of computational experiments to determine the effectiveness of the developed
    algorithm and select the optimal values of the control parameters were carried out.

  • EVOLUTIONARY DESIGN AS A TOOL FOR DEVELOPING MULTI-AGENT SYSTEMS

    L.A. Gladkov , N.V. Gladkova
    2020-11-22
    Abstract ▼

    The article is devoted to the discussion of the problems of constructing evolving multi-agent systems
    based on the use of the principles of evolutionary design and hybrid models. The concept of an
    agent is considered. A set of basic properties of the agent is presented. The analogies between multiagent
    and evolutionary systems are considered. The principles of construction and organization of multi-
    agent systems are considered. The similarities between the main definitions of the theory of agents
    and the theory of evolution are noted. It that the main evolution models and evolutionary algorithms can
    be successfully used in the design of multi-agent systems is noted. The analysis of existing methods andmethodologies for designing agents and multi-agent systems is carried out. The existing differences in
    approaches to the design of multi-agent systems are noted. The main types of models are described and
    their most important characteristics are given. A model of agent interaction, including a description of
    services (services), relationships and obligations existing between agents is presented. The model of
    relations (contacts), which defines communication links between agents is described. The importance
    and prospects of using the agent-based approach to the design of multi-agent systems are noted. The
    concept of designing agents and multi-agent systems, according to which the design process includes the
    basic components of self-organization, including the processes of interaction, crossing, adaptation to the
    environment, etc is proposed. Various approaches to the evolutionary design of artificial systems are
    considered. An evolutionary model of the formation of agents and agencies as the main component of
    evolutionary design is proposed. Modified evolutionary crossing-over operators to implement the agent
    design process are proposed.

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