TRANSFORMER COOLING UNIT CONTROL SYSTEM Russian patent published in 2022 - IPC H01F27/10 H05K7/20 H01F27/42 G05B19/42 

Abstract RU 2775740 C2

FIELD: electrical engineering.

SUBSTANCE: invention relates to electrical engineering. System (1) for controlling the cooling unit (3) of the transformer (2), in particular the traction transformer of the rail vehicle (8). The system (l) comprises a transformer (2), a cooling unit (3) designed to cool the transformer (2), and a control unit (4) designed to regulate the cooling unit (3) to cool the transformer (2). The control unit (4) is designed to regulate the cooling unit (3) using measurement data reflecting at least one state of the system (1) and/or environmental data, in anticipation of a change in the temperature of the transformer (2) due to the use of the transformer (2) and/or due to environmental influences. The system (1) also has a cloud data storage (7A) and a connection for transferring measurement data and/or environmental data between the control unit (4) and the data storage (7A).

EFFECT: improving the efficiency and service life of the transformer by controlling the cooling of the transformer.

10 cl, 3 dwg

Similar patents RU2775740C2

Title Year Author Number
SYSTEM FOR MONITORING THE QUALITY OF ELECTRIC ENERGY BY MEASURING ELECTRIC POWER QUANTITIES AND PARAMETERS 2022
  • Vedeneev Aleksej Aleksandrovich
RU2800630C1
SAFETY IN THE RAILWAY CROSSING ENSURING METHOD 2018
  • Efanov Dmitrij Viktorovich
  • Plotnikov Dmitrij Georgievich
  • Osadchij German Vladimirovich
RU2681451C1
POWER MANAGEMENT SYSTEM 2022
  • Akhundov Fuad Namikovich
  • Kazakov Grigorij Borisovich
  • Semenov Sergej Sergeevich
  • Kireev Sergej Vyacheslavovich
  • Ivanov Vyacheslav Aleksandrovich
RU2821067C2
WEARABLE DEVICE TO DETERMINE THE CENTRAL BODY TEMPERATURE OF THE USER, METHOD FOR DETERMINING THE CENTRAL BODY TEMPERATURE OF THE USER USING THE WEARABLE DEVICE AND SYSTEM COMPRISING THE WEARABLE DEVICE 2023
  • Volkova Elena Konstantinovna
  • Pavlov Konstantin Alexandrovich
  • Beliaev Kirill Gennadievich
  • Perchik Alexey Vyacheslavovich
  • Lychagov Vladislav Valerievich
  • Nikolaev Evgenii Alexandrovich
  • Ayuev Alexey Anatolievich
  • Nigmatulin Georgii Albertovich
  • Lee Wonseok
  • Lee Hongji
  • Kim Younghyun
RU2804226C1
EVALUATION OF THE SERVICE LIFE OF THE CYCLONE BASED ON THE REMAINING THICKNESS OF THE ABRASION-RESISTANT LINING 2019
  • Panchal, Dharmesh Chunilal
RU2764214C1
HIGH-VOLTAGE ELECTROTECHNICAL EQUIPMENT (HVEE) MONITORING SYSTEM 2013
  • Rassal'Skaja Svetlana Mikhajlovna
  • Sakhno Aleksandr Anatol'Evich
  • Konograj Sergej Petrovich
RU2554574C2
SYSTEM, METHOD AND COMPUTER PROGRAM PRODUCT FOR CONTROLLING AIR FILTERS 2017
  • Kon Dzhoshua
  • Ringstrem Richard
RU2704944C1
AUTOMOTIVE VIRTUAL HUMIDITY SENSOR 2014
  • Maknejll Perri Robinson
  • Veber Devid Charlz
RU2649937C2
DATA-BASED LEARNING SERVER AND METHOD FOR FORMING AND USING ITS LEARNING MODEL 2018
  • Ock, Hyun-Woo
  • Kim, Min-Kyong
  • Kim, Tan
  • Song, Hyung-Seon
  • Shin, Dong-Jun
  • Im, Sung-Bin
  • Seo, Hyeong-Joon
  • Joo, Young-Ju
RU2772237C2
SYSTEM AND METHOD FOR CONTINUOUS MONITORING OF STATE OF CONTACT NETWORK OF RAIL TRANSPORT 2018
  • Efanov Dmitrij Viktorovich
  • Gross Vadim Aleksandrovich
  • Romanchikov Andrej Mikhajlovich
  • Bolotskij Dmitrij Nikolaevich
  • Vasilev Anton Yurevich
RU2701887C1

RU 2 775 740 C2

Authors

Sedlmaier, Berthold

Englmann, Tobias

Mbuy, Aime

Dates

2022-07-07Published

2019-04-18Filed