Reed Switch Overcurrent Protection: New Approach to Design

Author:

Issabekov Dauren Dzhambulovich1ORCID,Mussayev Zhassulan Bakutzhanovich1,Markovskiy Vadim Pavlovich1,Kislov Aleksandr Petrovich2,Urazalimova Dariya Sansyzbayevna2

Affiliation:

1. Department of Electrical Power Engineering, Faculty of Energetics, Toraighyrov University, Lomov Str. 64, 140008 Pavlodar, Kazakhstan

2. Department of Electrical Engineering and Automation, Faculty of Energetics, Toraighyrov University, Lomov Str. 64, 140008 Pavlodar, Kazakhstan

Abstract

The problem of getting rid of expensive and metal-intensive current transformers has been declared by CIGRE as strategically important for the electric power industry. However, almost all traditional current protections receive information from measuring current transformers. In this work, a resource-saving reed switch overcurrent protection without current transformers is suggested, which can be used as an alternative to traditional current protections for 6–10 kV electrical installations connected to a switchgear cell. The protection is designed following the novel method we have developed based on inductance coils. Inductance coils measure the electromotive force under different operation modes of an electrical installation and at different points inside the switchgear cell it is connected to; the EMF values are recalculated in the values of magnetic induction, and reed switches are mounted instead of inductance coils at the points where the magnetic induction is maximal. Moreover, these values are sufficient to detect phase-to-phase short circuits in the electrical installation. The dependence of the induction value on the position of an inductance coil inside the cell is derived with the use of the simplest formula of the Biot–Savart law. The results can be used at large and small industrial enterprises, electric power stations, and substations of plants; they can be interesting for the scientific community because they help to solve the topical problem of the electric power industry.

Funder

Committee on Science of the Ministry of Science and Higher Education of the Republic of Kazakhstan

Publisher

MDPI AG

Reference36 articles.

1. Andreev, J.V. (2008). Relay Protection and Automatics of Power Supply Systems, Higher School. [4th ed.].

2. Kazansky, V.E. (1969). Current Transformers in Relay Protection Circuits, Energiya.

3. Electric-power industry in the world in early 21st century (according to the materials of the 39th CIGRE session, Paris);Energ. Zarubezhom,2004

4. Shneerson, E.M. (2007). Digital Relay Protection, Energoatomizdat.

5. (2024, February 28). Sverdlovsk Plant of Current Transformers. Available online: https://www.cztt.ru/catalog/transformatory-toka/transformatory-toka-naruzhnoy-ustanovki/opornye1/10-kv-1/tol10iii/.

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