• DocumentCode
    2434348
  • Title

    Accuracy increase for measurement of electromagnetic field of source plurality

  • Author

    Kaymov, R.T. ; Sedeinikov, Y.E.

  • Author_Institution
    Res. Centre for Appl. Electrodynamic, Kazan State Tech. Univ., Russia
  • fYear
    2000
  • fDate
    11-15 Sept. 2000
  • Firstpage
    495
  • Lastpage
    496
  • Abstract
    The methods for accuracy increase of measurement of electromagnetic field of source plurality have been considered. These methods allow one to obtain full information about the operating radiants, to define power parameters (intensity and power flux density) of electromagnetic field, formed by each radiant separately and by their plurality. Using these methods, the measurement accuracy increases by 2 to 10 times. The dependence of a measuring error of electromagnetic field intensity, formed by two radiants on relation of intensities of these radiants (E/sub 2//E/sub 1/), is given for the following cases: measurement of electric intensity formed by the first and the second radiants in a nominal mode (not using the offered methods) (E/sub 1/ and E/sub 2/); measurement of electric intensity formed by the first and the second radiants, using the first method offered (E/sub 1B1/ and E/sub 2B1/); measurement of electric intensity formed by the first and the second radiants, using the second method offered (spectrum analysis) (E/sub 1B2/ and E/sub 2B2/) For the second method the measuring error does not exceed 14% at any relation of effective stimulus sources.
  • Keywords
    electromagnetic fields; field strength measurement; measurement errors; spectral analysis; effective stimulus sources; electromagnetic field; intensity; measurement accuracy; nominal mode; power flux density; power parameters; source plurality; spectrum analysis; Artificial intelligence; Electromagnetic fields; Electromagnetic measurements; Helium; IEEE catalog; Microwave technology; Organizing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave Conference, 2000. Microwave and Telecommunication Technology. 2000 10th International Crimean
  • Conference_Location
    Crimea, Ukraine
  • Print_ISBN
    966-572-048-1
  • Type

    conf

  • DOI
    10.1109/CRMICO.2000.1256196
  • Filename
    1256196