Design, manufacturing and commissioning of nuclear industry equipment
Article Name | 10.26583/GNS-2019-03-05Automated Station for Maintenance and Restoration of Battery Capacity In Depot |
---|
Authors | S.А. Baran1, G.P. Smetankin2 |
---|
Address | Volgodonsk Engineering Technical Institute the branch of National Research Nuclear University “MEPhI”, Lenin St., 73/94, Volgodonsk, Rostov region, Russia 347360
1 ORCID iD: 0000-0002-3232-4072
WoS Researcher ID: I-7933-2018
e-mail: bastr@rambler.ru
2 ORCID iD: 0000-0002-8191-6496
e-mail: nvo_@mail.ru
|
---|
Abstract | The work is devoted to the issues of modernization of the maintenance technology for electric vehicle batteries. It considers methods for charging batteries, gives a block diagram of an automatic installation for charging batteries with an asymmetric current |
---|
Keywords | rechargeable batteries, charge, discharge, asymmetric current, automatic charge-discharge station, maintenance |
---|
Language | Russian |
---|
References |
- Taimarov M.A, Bagautdinov I.Z. Improving the Reliability of Batteries. Bulletin of Kazan Technological University. 2014. № 13. P. 311-313.
- Smetankin G.P., Burdyugov A.S., Matekin S.S. Investigation of Charge Efficiency of Nickel-Cadmium Rechargeable Batteries by Asymmetric and Direct Current. Electrochemical Power Engineering 2008. № 3. P. 164-167.
- Chupin D.P. Diagnostic Methods of Battery Batteries. Measurement, Control, Informatization: Materials of the Thirteenth International Scientific and Technical Conference V. 1. Barnaul: AltSTU, 2012. P. 164-168.
- Klikushin Yu.N., Chupin D.P. Method of Rapid Assessment of Battery Capacity. Measurement, Control, Informatization: Materials of the Thirteenth International Scientific and Technical Conference V. 1. Barnaul: AltSTU, 2012. P. 158-161.
- Sitnikov A.V., Maslennikova S.I. Rechargeable Batteries of Wearable Electronic Devices. Radiostroenie.2017. № 05. P.52-72
- Lazarev G.B. Managing the Efficiency of Mechanisms for the Own Needs of TPPs. Energy of the Unified Network. 2012. № 5. P. 58-67.
- Malafeev A.V., Tremasov M.A. Analysis of Engine Stability of their Own Needs of Thermal Power Plants Taking into Account the Characteristics of the Driving Mechanisms. Electrical Systems and Complexes. 2016. № 4. P. 6-13. DOI.org/10.18503/2311-8318-2016-4(3333-6-13.
- PUE Rules for Electrical Installations. Edition 7 dated July 8, 2002 № 204. Ministry of Energy of the Russian Federation. January 1. 2003
- Rozhkova, L.D., Kozulin, V.S. Electrical Equipment of Stations and Substations. 3rd ed. Moscow: Energoatomizdat, 1987. 648 p.
- Sadovnikov A.V., Makarchuk V.V. Lithium-Ion Batteries. Young Scientist. 2016. № 23. P. 84-89.
- Tsivadze, A.Yu., Kulova, T.L., Skundin, A.M. Fundamental Problems of Lithium-Ion Batteries. Physicochemistry of the Surface and Protection of Materials. 2013. № 2. P. 149. DOI.org/10.7868/S0044185613020083.
- Sysolyatin V.Yu. Digital Charge-Discharge Device for Chemical Current Sources. Omsk Scientific Herald 2012, № 3. Р. 241-245.
|
---|
Papers | 50 - 55 |
---|
URL Article | URL Article |
---|
| Open Article |
---|