Mathematical Modeling of Time Response Analysis of Residual Current Devices with Electronic Switches

Author:

YAĞIMLI Mustafa1ORCID,YURTCU Ahmet2ORCID

Affiliation:

1. İstanbul Gedik Üniversitesi Mühendislik Fakültesi Bilgisayar Mühendisliği

2. İstanbul Gedik Üniversitesi, Lisansüstü Eğitim Enstitüsü, İş Sağlığı Ve Güvenliği Doktora Programı

Abstract

Today, relay contact and electronic residual current relays are used in order to protect human life against electrical shocks and machinery and equipment from malfunctions caused by excessive current. These residual current relays step in at 30 mA level and cut the current from the system. With the developed electronic switch and residual current device hybrid system, the human body residual current value and current cut-off response time were calculated using Monte Carlo Simulation frequency / intensity distributions. In the field of application, data sets were created in this study, which can be realized using physical and ambient data related to the human body resistance value. In this study, the reaction time of the system developed according to the amount of electric current, temperature of the human body, skin and moisture properties, shoes worn, decking, material type characteristics was modeled mathematically by using Monte Carlo simulation.

Publisher

Sakarya University Journal of Science

Subject

General Medicine

Reference17 articles.

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2. [2] C. E. Papadopoulos, H. Yeung, “Uncertainty estimation and Monte Carlo simulation method,” Flow Measurement and Instrumentation, vol. 12, no. 4, pp. 291-298, 2001.

3. [3] C. Dalziel, F. Berkeley, “Types and effects of electric current,” Electrical Engineering, no. 190, pp. 72-80, 2011.

4. [4] C. Nuran, “Comparison of anti-statical footwears’ electical resistance test between under laboratory conditions and under work conditions while they are Used, Ministry of the Labor and Social Security,” Occupational Health and Safety Directorate Thesis for Occupational Health and Safety Expertise, Ankara, 2016.

5. [5] A. Çobanoğlu, G. Demirkıan, M. Güneş, “Design of a solar-assisted charging station for electric vehicles in İzmir,” European Journal of Science and Technology, no. 21, pp. 635-648, 2021.

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