IDENTIFICATION OF CHARACTERISTICS OF CONCEPTUAL PROTOTYPE OF MICROPROCESSOR RESOURCE-SAVING RELAY PROTECTION SYSTEM
Neftissov A. Kazambayev I. Kirichenko L. Urazayev D. Biloshchytskyi A. Abdirashev O.
2024Technology Center
Eastern-European Journal of Enterprise Technologies
2024#5Issue 5(131)60 - 69 pp.
The object of the study is the conceptual prototype of a microprocessor resource-saving relay protection system. Currently, relay protection ensures electrical networks reliable and efficient work, however, the traditional architecture is proprietary, not allowing to fix and replace damaged parts without a company specialist. Therefore, the open-architecture relay protection is a very pressing issue, but the problem lies in meeting the relay protection requirements. The data transmission protocols nRF and ESP-NOW, Hall sensors evaluation for AC current measurement determination and sensor accuracy improvement was implemented. Experimental validation demonstrated that nRF and ESP-NOW protocols meet the delay and reliability requirements, however, the nRF protocol is more suitable due to its flexibility and obstacle penetration. The data demonstrated that the most effective conditions are without obstacles at 15 meters from the modem and with obstacles 5 meters from the modem. The experiment of Hall sensors characteristics determination demonstrated the accuracy of current measurement with the set values of the opening and closing currents. Nevertheless, it is not accurate (12.45 %) for the relay protection application. Therefore, the application of the changing values of the opening and closing currents is more effective and accuracy reaches 6.92 %. As a result, the service life of the Hall sensor was determined, and even after 10 million openings, the open state time remained unchanged. Therefore, the approximation function for current amplitude determination depending on open state time was found. On the other hand, Hall sensors may suffer from temperature drift and require further optimization to be fully reliable. The study limitation is the current range from 0 to 800 A Copyright
Hall sensor , magnetic field , open architecture , reed switch , relay protection
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Department of Computer Science, Nazarbayev University, Kabanbay batyr ave., 53, Astana, 010000, Kazakhstan
Vice-Rector of the Science and Innovation, Ukraine
Kyiv National University of Construction and Architecture, Povitroflotsky ave., 31, Kyiv, 03037, Ukraine
Department of Space Engineering and Technology, L. N. Gumilyov Eurasian National University, Satbaev str., 2, Astana, 010000, Kazakhstan
Research and Innovation Center “Industry 4.0”, Kazakhstan
Astana IT University, Mangilik Yel ave., EXPO Business Center, Block C.1., Astana, 010000, Kazakhstan
Department of Computer Science
Vice-Rector of the Science and Innovation
Kyiv National University of Construction and Architecture
Department of Space Engineering and Technology
Research and Innovation Center “Industry 4.0”
Astana IT University
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