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Probabilistic model of fibrillation currents created by superposition of two shocking currents with different frequencies

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Języki publikacji
EN
Abstrakty
EN
The paper presents the probabilistic model of fibrillation currents containing two components with different frequencies. An analysis was conducted of the threat of ventricular fibrillation which occurs in consequence of the electric shock with the highest permissible contact shocking voltage of the network frequency (50 Hz), taking into account the threat caused by the second component of the voltage which has the frequency higher than the network frequency. The sample results of calculations apply to the probability of the ventricular fibrillation in case of a shock caused by the highest permissible contact shocking voltage, for the defined time of shock duration, without and with the participation of an additional voltage component with higher frequency. The formula has been presented for the calculation of the highest permissible contact shock voltages with taking into account the voltage component of the frequency higher than the network frequency. The results of calculations indicate that a considerable reduction of the highest permissible contact shock voltage is necessary in order to compensate for a growth of the ventricular fibrillation threat caused by the presence of an additional component with the frequency other the network frequency. This applies in particular to the long shock duration times and low frequencies (up to 500 Hz) of an additional component of the shocking voltage.
Rocznik
Strony
67--77
Opis fizyczny
Bibliogr. 6 poz., rys., tab.
Twórcy
autor
autor
autor
Bibliografia
  • [1] K.A. Azhibaev, Physiological mechanisms of the electrical shock to the organism. Ilim, Frunze 1978.
  • [2] T. Bernstein, Safety criteria for intended or expected non-lethal electrical shocks. Proceedings of the First International Symposium on Electrical Shock Safety Criteria. Pergamon Press, Toronto 1983.
  • [3] W. Korniluk, D. Sajewicz, Analysis of the consequences of the electrical shock caused during the asymmetric short-circuits in the MV networks. Research conducted at the order of the Institute of Power Engineering, Warsaw (theme EBA/02/Pb/2003/2004/2005), Białystok 2005.
  • [4] W. Korniluk, D. Sajewicz, Probabilistic model of the current causing the ventricular fibrillation. Wiadomości Elektrotechniczne 2: 20-24 (2007).
  • [5] W. Korniluk, D. Sajewicz, Probabilistic model of the human body impedance. Archives of Electrical Engineering LVIII: 227-228 – 1-1: 43-58 (2009).
  • [6] PN-E-05115:2002, Alternating Current Electrical Installations with a Voltage Higher than 1kV.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0057-0068
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