INVESTIGATION OF ERRORS OF CURRENT TRANSFORMERS IN THE PROTECTION SYSTEMS IN STEADY AND TRANSIENT CONDITIONS OF ENERGY SYSTEM
DOI:
https://doi.org/10.15588/1607-6761-2016-2-7Keywords:
current transformers, current error, angular error, relay protection, emergency conditionAbstract
Purpose. The main idea of the paper is investigation of the maximum values of current and angle errors of the current transformers and the nature of their changes in steady-state and transient power system conditions in which the possible output of errors beyond the normalized range of values, as well as a comparison of the degree of change of current and angle errors of the current transformers for power supply auxiliary wiring devices of relaying protection in these conditions.
Research methods. The authors used the method of simulation and visualization of the current transformer operation of computers, intended for supply of secondary circuits of relay protection devices in steady and transient conditions of supply power system and different operating modes.
The obtained results. The authors defined the percentage of the maximum current and angular error of the primary current transformation to the secondary circuit of the current transformer which are caused by the presence of the magnetizing current and resistive losses in the magnetic system of the test current transformer; their comparison is performed and conclusions are drawn regarding their changes in steady-state and transient conditions, in particular, the fact is established that the current errors in emergency conditions vary to a much greater extent than the angular and under certain conditions may extend beyond the value of the normalized state standards.
Scientific novelty. The authors developed the modern method of investigation of current and angle errors of the current transformers for auxiliary supply of relay protection devices based on the use of a computer model of an ideal current transformer with a linear no hysteresis B-H curve, which has similar characteristics and primary and secondary circuit parameters to study the real transformer current.
Practical significance. The results can be used in researching the optimum operating current transformers conditions and the development of new principles of perform measurement and logical circuits of relaying protection, in particular, it was concluded that in order to provide the more sensitive and selective protection we can use the devices based on the principle of their action to respond only to the phase relation between the currents of the current transformers and connections that have to be rebuilt only from the angle measurement errors.
References
Афанасьев В. В. Трансформаторы тока / В. В. Афанасьев, Н. М. Адоньев, В. М. Кибель, И. М. Сирота, Б. С. Стогний – Л : Энергоатомиздат, 1989. – 416 с.
Трансформатори вимірювальні. Частина 1. Трансформатори струму (IEC 60044-1:2003, IDT) : ДСТУ IEC 60044-1:2008. — [Чинний від 2010-01-01]. — К. : Держспоживстандарт України, 2010. — 38 с. — (Національний стандарт України).
Armando Guzmаn (2011), «Improvements in Transformer Protection and Control», SEL Journal of Reliable Power : Vol. 2, pp. 1–17 (Eng).
Michael Thompson (2001), «Secure Application of Transformer Differential Relays for Bus Protection», ELECSAR Engineering and Schweitzer Engineering Laboratories : Vol. 14, pp. 75–93 (Eng).
S. E. Zocholl (2012), «Current Transformer Concepts», Journal of Reliable Power : Vol. 5, pp. 31–55 (Eng).
Правила устройства электроустановок: Глава 3.2. Релейная защита / Минэнерго Украины. – 7-е изд., перераб. и доп. – Х: Форт, 2009. – 704 с.
Технічна експлуатація електричних станцій та мереж. Правила / Мінпаливенерго України. Київ : НТУКЦ, 2003. – 597 с.
Федосеев А. М. Релейная защита электроэнергетических систем. Релейная защита сетей: учебное пособие для вузов / А. М. Федосеев. – М: Энергоатомиздат, 1984. – 520 с.
Кужеков С. Л. Защита шин электростанций и подстанций / С. Л. Кужеков, В. Я. Синельников. – М: Энергоатомиздат, 1983. – 184 с.
Ниценко В. В. Перспективы использования дифференциыально-фазного принципа для защиты систем сборных шин распределительных устройств 110–750 кВ / Ниценко В. В., Кулагин Д. А. // Електромеханічні і енергозберігаючі системи. Щоквартальний науково-виробничий журнал. – Кременчук: КрНУ, 2015. – Вип. 3/2015 (31). – С. 158–166.
Байков А.И. Математические модели трансформаторов при анализе силовой части электроприводов / Байков А.И. // Труды Нижегородского государственного технического университета им. Р.Е. Алексеева. – Нижний Новгород: НГТУ, 2013. – Вип. 5/2013 (102). – С. 316–327.
Андреев В.А. Релейная защита и автоматика систем электроснабжения / В. А. Андреев. – М.: Высш. шк., 2006. – 639 с.
Downloads
How to Cite
Issue
Section
License
Copyright (c) 2017 V. V. Nitsenko, D. O. Kulagin, P. V. Makhlin
This work is licensed under a Creative Commons Attribution 4.0 International License.
Creative Commons Licensing Notifications in the Copyright Notices
Authors who publish with this journal agree to the following terms:
Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under aCreative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work.