The problem of computer modelling and visualization of low frequency electromagnetic fields is in the area of interest of such directions as education, research activity, medicine and industry. Visualization helps better understanding the influence of magnetic fields on various physical environments, and a clarifying the physical and mathematical models that are used. In industry visualization is often applied in the tools for non-destructive testing and in magnetic inspection systems. In medicine these fields are traditionally used in magnetotherapy, and at the moment computer modelling and visualization are often the only practical approach to the studying the influence magnetic fields on a living organism. In this work we demonstrate a computer tool both for modelling a magnetic field distribution and the motion of a charged particle in this field. The algorithms are implemented in a special environment Unity. That allows the combining calculations and visualization and results in considerable reducing run-time and the development of a flexible application that may be easily used by physicians. The results of experiments are given.

Язык оригиналаанглийский
Название основной публикацииProceedings of 14th International Conference on Communications, Electromagnetic and Medical Applications (CEMA ...)
Редакторы Dimiter Tz. Dimitrov
Место публикацииSofia
Издатель TECHNICAL UNIVERSITY OF SOFIA
Страницы41-45
Число страниц5
Том2019-October
СостояниеОпубликовано - 17 окт 2019
Событие14TH INTERNATIONAL CONFERENCE ON COMMUNICATIONS, ELECTROMAGNETICS AND MEDICAL APPLICATIONS - София, Болгария
Продолжительность: 17 окт 201919 окт 2019

Серия публикаций

НазваниеCommunication, Electromagnetics and Medical Application
ISSN (печатное издание)1314-2100

конференция

конференция14TH INTERNATIONAL CONFERENCE ON COMMUNICATIONS, ELECTROMAGNETICS AND MEDICAL APPLICATIONS
Сокращенное названиеCEMA’19
Страна/TерриторияБолгария
ГородСофия
Период17/10/1919/10/19

    Области исследований

  • Computer modeling, computer visualization, magnetic field, charged particle, computer tool

    Предметные области Scopus

  • Компьютерные науки (все)

ID: 48317151