Skip to main content Skip to main navigation menu Skip to site footer
##common.pageHeaderLogo.altText##
Izvestiya SFedU
Engineering sciences
  • Current
  • Previous issues
    • Archive
    • Issues 1995 – 2019
  • Editorial Board
  • About journal
    • Officially
    • The main tasks
    • Main sections
    • Specialties of the Higher Attestation Commission of the Russian Federation
    • Editor-in-Chief
ISSN 1999-9429 print
ISSN 2311-3103 online
  • Login
  1. Home /
  2. Search

Search

Advanced filters
Published After
Published Before

Search Results

##search.searchResults.foundPlural##
  • HARDWARRE-SOFTWARE FRAMEWORK FOR DEVELOPMENT OF MODULAR MOBILE ROBOTS WITH HIERARCHICAL ARCHITECTURE

    V.P. Andreev, V.L. Kim, S.R. Eprikov
    2020-07-10
    Abstract ▼

    In this paper, we consider the main problems associated with the need to integrate various robotic components into a single system while increasing the complexity of the navigation algo-rithms of mobile robots. The work aims to present a hierarchical modular architecture for reconfigurable mobile robots as a solution to the problems posed. In this architecture, a mobile robot is considered as a combination of modules, which in turn consist of simpler blocks - submodules. Each submodule includes a low-power microcontroller and is responsible only for the basic func-tions. A set of submodules forms a module - a transport platform, a robot leg, a manipulator, etc. Besides, one of the main objectives of the project is to provide a framework based on this architec-ture for rapid prototyping of robots from unified modules. The article describes the manufactured prototypes of the modules, briefly discusses the protocol of intermodular interaction of submodules connected by a CAN bus. The results of experiments on testing the protocol are presented and their analysis is given. The efficiency of the proposed solution limitations and a short plan of fur-ther actions for the implementation of the project are shown.

  • AUTOMATED STRUCTURAL-PARAMETRIC SYNTHESIS OF A STEPSED DIRECTIONAL RESPONDER ON CONNECTED LINES BASED ON A GENETIC ALGORITHM

    Y. V. Danilchenko , V.I. Danilchenko, V. M. Kureichik
    2020-11-22
    Abstract ▼

    An automated approach to the structural-parametric synthesis of a stepped directional coupler
    on connected lines based on a genetic algorithm (GA) is described, which makes it possible to
    create an algorithmic environment in the field of genetic search for solving NP complete problems,
    in particular, the structural-parametric synthesis of a stepped directional coupler on connected
    lines. The purpose of this work is to find ways of structural-parametric synthesis of a stepped directional
    coupler on coupled lines based on the bionspiration theory. The scientific novelty lies in
    the development of a modified genetic algorithm for automated structural-parametric synthesis ofa stepped directional coupler on connected lines. The problem statement in this work is as follows:
    to optimize the synthesis of passive and active microwave circuits by using a modified GA. A fundamental
    difference from the known approaches in the use of new modified genetic structures in
    automated structural-parametric synthesis, in addition, a new method for calculating a stepped
    directional coupler on connected lines based on a modified GA is righteous in the work. Thus, the
    problem of creating methods, algorithms and software for automated structural synthesis of microwave
    modules is currently of particular relevance. Its solution will improve the quality characteristics
    of the designed devices, reduce design time and costs, and reduce the requirements for
    developer qualifications.

  • MODELING OF TWO MICROSTRIP FILTERS OF THE CENTIMETER RANGE

    A.N. Zikiy , P. N. Zlaman
    2021-01-19
    Abstract ▼

    Band-pass filters are an integral part of any radio equipment. They determine the selectivity of
    the receiver for all channels of reception. The aim of this work is to modelling two microstrip filters
    of the centimeter wave range. The object of study in this work are two microstrip filters at a frequency
    of 5.75 GHz and 4.6 GHz. Such filters can be used in the converter of the centimeter wave range
    as a signal and heterodyne filters. Two filters were simulated in the Microwave Office environment.
    The results are presented in the form of models of two filters and four amplitude-frequency characteristics.
    Given are the geometric dimensions of the filters, sufficient for their manufacture on material
    RT5870 of Rogers company. Filters have a bandwidth of 200 MHz and a loss in bandwidth of not
    more than 3 dB. Losses in the stop band for the signal filter were at least 45 dB, and at least 35 dB
    for the heterodyne filter, which is a very good result for a two-pole filter. Acceptable electrical parameters,
    small dimensions and moderate cost of manufacturing filters allows them to be widely used
    in professional and amateur radio equipment. To improve the manufacturability of manufacturing, a
    material with a low dielectric constant was selected. At the same time, gaps and tolerances on theaccuracy of their manufacture are acceptable. The design of the filters allows them to be easily
    integrated with other components of the converter: a low-noise amplifier, a mixer, an intermediate
    frequency amplifier, an amplifier in the local oscillator path.

1 - 3 of 3 items

links

For authors
  • Submit article
  • Author Guidelines
  • Editorial Policy
  • Reviewing
  • Ethics of scientific publications
  • Open access policy
  • Supporting documents
Language
  • English
  • русский

journal

* not an advertisement

index

Индексация журнала
* not an advertisement
Information
  • For Readers
  • For Authors
  • For Librarians
Address: 347900, Taganrog, Chekhov St., 22, A-211 Phone: +7 (8634) 37-19-80 E-mail: iborodyanskiy@sfedu.ru
Publication is free
More information about the publishing system, Platform and Workflow by OJS/PKP.
logo Developed by RDCenter