WO2004040601A1 - Reacteur shunt commande - Google Patents

Reacteur shunt commande Download PDF

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Publication number
WO2004040601A1
WO2004040601A1 PCT/RU2003/000436 RU0300436W WO2004040601A1 WO 2004040601 A1 WO2004040601 A1 WO 2004040601A1 RU 0300436 W RU0300436 W RU 0300436W WO 2004040601 A1 WO2004040601 A1 WO 2004040601A1
Authority
WO
WIPO (PCT)
Prior art keywords
φig
section
circuit breaker
οbmοτκu
magnetic
Prior art date
Application number
PCT/RU2003/000436
Other languages
English (en)
Russian (ru)
Inventor
Georgy Nikolaevich Alexandrov
Original Assignee
Federalnoe Gosudarstvennoe Unitarnoe Predpriyatie 'vneshneekonomicheskoe Obiedinenie 'tekhnopromexport'
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Federalnoe Gosudarstvennoe Unitarnoe Predpriyatie 'vneshneekonomicheskoe Obiedinenie 'tekhnopromexport' filed Critical Federalnoe Gosudarstvennoe Unitarnoe Predpriyatie 'vneshneekonomicheskoe Obiedinenie 'tekhnopromexport'
Priority to AU2003277758A priority Critical patent/AU2003277758A1/en
Publication of WO2004040601A1 publication Critical patent/WO2004040601A1/fr

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00Details of transformers or inductances, in general
    • H01F27/24Magnetic cores

Definitions

  • Iz ⁇ b ⁇ e ⁇ enie ⁇ n ⁇ si ⁇ sya ⁇ ⁇ blas ⁇ i ele ⁇ e ⁇ ni ⁇ i and ele ⁇ ene ⁇ ge ⁇ i ⁇ i and m ⁇ zhe ⁇ by ⁇ is ⁇ lz ⁇ van ⁇ in ⁇ aches ⁇ ve ⁇ eguli ⁇ uem ⁇ g ⁇ s ⁇ ivleniya in chas ⁇ n ⁇ s ⁇ i in ⁇ aches ⁇ ve s ⁇ a ⁇ iches ⁇ g ⁇ ⁇ m ⁇ ensa ⁇ a izby ⁇ chn ⁇ y ⁇ ea ⁇ ivn ⁇ y m ⁇ schn ⁇ s ⁇ i in ele ⁇ iches ⁇ i ⁇ se ⁇ ya ⁇ .
  • This invention eliminates the aforementioned drawbacks.
  • the essence of the invention is the limitation of the higher utility costs in the main utility system; Ensuring the ability to use a different operating system; decrease in waste of electric steel; decrease in response time 2
  • ⁇ ig. 1 - a basic electrical circuit for an operating shunt process, where: 1 - a network test; 2 - compensated treatment; 3 - handling; 4 - operational control unit; 5 - filter of the filter of the third household; 6 - ⁇ ndensa ⁇ ⁇ il ⁇ a ⁇ e ⁇ ey ga ⁇ m ⁇ ni ⁇ i, 7, 8, 9 - ⁇ ndensa ⁇ y ⁇ il ⁇ v 5 th, 7 th, 11 th ga ⁇ m ⁇ ni ⁇ ; 10, 11, 12 - d ⁇ sseli ⁇ il ⁇ v 5 th, 7 th, 11 th ga ⁇ m ⁇ ni ⁇ ; 13 - vacuum circuit breaker; 14 - condensation; 15 - vacuum circuit breaker 3
  • ⁇ ig. 2 and ⁇ ig. 3 - the scheme of the distribution of the access to the magnetic equipment is horizontal and horizontal, where: 1 - the network module; 2 - the compensated module; ⁇ ig. 4 - equivalent circuit for shunt drive operation using vacuum circuit breakers, where: 1 - network circuit breaker, 3 - circuit switch, 15 - vacuum circuit breaker.
  • ⁇ ig. 6 - a fragment of the location of the shunt in the reactor, where 17 is a schematic image of the yarma, 16 is a schematic picture of the core, 18 is a magnetic shunt.
  • ⁇ ig. 7 - a schematic illustration of a disconnect of a recess to illustrate a plasti-section of a magnetic unit;
  • the device operates the following way.
  • the basic change in the power supply is coupled with a change in the ignition angle.
  • the unit in the main unit 1 is minimal.
  • the maximum is inductive. If you connect to the compensated version 2 of the compensator 14 current in the network 1, and the inlet of the unit 4 is the maximum capacity.
  • the volumetric load in mains 1 decreases to zero and increases as the vehicle increases Despite the short burning time of units 4 in the process of installation 3, the higher standard values are recognized.
  • Compensated Box 2 is used, which is located between Basic Box 1 and Box 3. 4
  • ⁇ m ⁇ ensatsii 5 th, 7 th, 11 th ga ⁇ m ⁇ niches ⁇ i ⁇ is ⁇ lzuyu ⁇ sya ⁇ il ⁇ y, s ⁇ s ⁇ yaschie of ⁇ sled ⁇ va ⁇ eln ⁇ g ⁇ s ⁇ edineniya d ⁇ sselya with ⁇ i ⁇ si ⁇ vann ⁇ y indu ⁇ ivn ⁇ s ⁇ yu and ⁇ ndensa ⁇ a.
  • P ⁇ i ne ⁇ b ⁇ dim ⁇ s ⁇ i ⁇ a ⁇ v ⁇ emenn ⁇ g ⁇ ⁇ a increase in se ⁇ ev ⁇ y ⁇ bm ⁇ e 1 sve ⁇ n ⁇ minaln ⁇ g ⁇ (na ⁇ ime ⁇ on v ⁇ emya ⁇ e ⁇ e ⁇ dn ⁇ g ⁇ ⁇ tsessa ⁇ sle ⁇ mmu ⁇ atsii lineyn ⁇ g ⁇ v ⁇ slyucha ⁇ elya for ⁇ g ⁇ anicheniya ⁇ mmu ⁇ atsi ⁇ nny ⁇ ⁇ e ⁇ ena ⁇ yazhenii) ne ⁇ b ⁇ dim ⁇ zam ⁇ nu ⁇ ⁇ m ⁇ ensatsi ⁇ nnuyu ⁇ bm ⁇ u 2 va ⁇ uumnym v ⁇ slyucha ⁇ elem 13 ch ⁇ ⁇ iv ⁇ di ⁇ ⁇ indu ⁇ ivn ⁇ g ⁇ s ⁇ ivleniya ⁇ ea ⁇ a decrease by 25-40%.
  • Shunts 18 are divided into four identical sectors (Fig. 7), which are adjacent to the pit 17 with two sides. All shunts 18 are packaged in parallel power supplies.
  • Se ⁇ nye shun ⁇ y 18 ⁇ bes ⁇ echivayu ⁇ ⁇ a ⁇ iches ⁇ uyu ⁇ a ⁇ alleln ⁇ s ⁇ magni ⁇ ny ⁇ lines ⁇ all vys ⁇ e ⁇ bm ⁇ ⁇ ea ⁇ a and ⁇ s ⁇ ans ⁇ ve between them ch ⁇ is ⁇ lyuchae ⁇ ⁇ e ⁇ eg ⁇ ev ⁇ ayni ⁇ vi ⁇ v ⁇ bm ⁇ and u ⁇ schae ⁇ ⁇ asche ⁇ all magni ⁇ n ⁇ y sis ⁇ emy ⁇ ea ⁇ a. According to these shunts, the 18 magnetic flow at the exit from the interstate is sent to the pits 17 and closes in them. ⁇ As a result, the capacities are reduced and make up no more than 10% of the total capacity of the process.
  • ⁇ I - is the total cross section of the magnet
  • ⁇ st - is the cross section of the external magnet
  • is the thickness of the mains unit
  • ⁇ 2 is the total area of the population
  • ⁇ 12 is the area
  • Iz ⁇ b ⁇ e ⁇ enie m ⁇ zhe ⁇ by ⁇ is ⁇ lz ⁇ van ⁇ in ⁇ aches ⁇ ve ⁇ eguli ⁇ uem ⁇ g ⁇ ⁇ ea ⁇ ivn ⁇ g ⁇ s ⁇ ivleniya in chas ⁇ n ⁇ s ⁇ i in ⁇ aches ⁇ ve s ⁇ a ⁇ iches ⁇ g ⁇ ⁇ m ⁇ ensa ⁇ a izby ⁇ chn ⁇ y ⁇ ea ⁇ ivn ⁇ y m ⁇ schn ⁇ s ⁇ i in ele ⁇ iches ⁇ i ⁇ se ⁇ ya ⁇ , ⁇ i e ⁇ m ⁇ e ⁇ niches ⁇ im ⁇ ezul ⁇ a ⁇ m iz ⁇ b ⁇ e ⁇ eniya yavlyae ⁇ sya ⁇ g ⁇ anichenie vysshi ⁇ ga ⁇ m ⁇ niches ⁇ i ⁇ in ⁇ e se ⁇ ev ⁇ y ⁇ bm ⁇ i ⁇ ea ⁇ a d ⁇ u ⁇ vnya, d ⁇ us ⁇ im ⁇ g ⁇ for e ⁇

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Control Of Electrical Variables (AREA)
  • Junction Field-Effect Transistors (AREA)

Abstract

L'invention relève du domaine de l'électrotechnique et de l'industrie électrique, et concerne un dispositif pouvant servir de résistance réactive réglable, en particulier de compensateur statique de puissance réactive en excès dans des réseaux électriques. Le dispositif selon l'invention permet de limiter les harmoniques supérieures dans le courant d'un enroulement de puissance d'un réacteur à un niveau acceptable pour l'exploitation de réseaux électriques, de diminuer la consommation d'acier électrique, de réduire le temps de réaction du réacteur, de limiter les dimensions de ce dernier, et de diminuer la dispersion du champ magnétique. Les caractéristiques permettant d'atteindre ces objectifs sont les suivantes : la configuration des tiges et des culasses du circuit magnétique du réacteur, la disposition et la forme sectorielle de shunts magnétiques, et l'intégration de disjoncteurs sous vide aux circuits de commutation des enroulements du réacteur.
PCT/RU2003/000436 2002-10-31 2003-10-13 Reacteur shunt commande WO2004040601A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU2003277758A AU2003277758A1 (en) 2002-10-31 2003-10-13 Controlled shunt reactor

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
RU2002129136/09A RU2221297C1 (ru) 2002-10-31 2002-10-31 Управляемый шунтирующий реактор
RU2002129136 2002-10-31

Publications (1)

Publication Number Publication Date
WO2004040601A1 true WO2004040601A1 (fr) 2004-05-13

Family

ID=32091791

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/RU2003/000436 WO2004040601A1 (fr) 2002-10-31 2003-10-13 Reacteur shunt commande

Country Status (3)

Country Link
AU (1) AU2003277758A1 (fr)
RU (1) RU2221297C1 (fr)
WO (1) WO2004040601A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2478236C1 (ru) * 2011-09-07 2013-03-27 Брянцев Михаил Александрович Управляемый шунтирующий реактор-трансформатор
RU2631260C1 (ru) * 2016-12-09 2017-09-20 Публичное акционерное общество "Федеральная сетевая компании Единой энергетической системы" Способ компенсации тока подпитки дуги однофазного замыкания линии электропередачи

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2340027C1 (ru) * 2007-07-11 2008-11-27 Закрытое акционерное общество Промышленно-Инвестиционная Компания "Энерготраст" Устройство ограничения токов короткого замыкания
RU2348998C1 (ru) * 2008-01-31 2009-03-10 Александр Васильевич Григорьев Управляемый реактор трансформаторного типа
RU2439730C1 (ru) * 2010-06-02 2012-01-10 Сиадор Энтерпрайзис Лимитед Электрический реактор с подмагничиванием
RU2451353C1 (ru) * 2010-10-21 2012-05-20 Александр Михайлович Брянцев Трехфазный управляемый подмагничиванием реактор
DE202011051315U1 (de) 2011-01-26 2011-11-23 Ooo Enerkom-Service Einphasige Elektroinduktionseinrichtung
RU2518149C2 (ru) * 2012-09-18 2014-06-10 Открытое Акционерное Общество "Федеральная Сетевая Компания Единой Энергетической Системы" (Оао "Фск Еэс") Управляемый реактор с трехстержневым магнитопроводом
RU2545511C2 (ru) * 2013-05-21 2015-04-10 Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "ВЯТСКИЙ ГОСУДАРСТВЕННЫЙ УНИВЕРСИТЕТ" (ФГБОУ ВПО "ВятГУ") Управляемый шунтирующий реактор-автотрансформатор
RU2539358C1 (ru) * 2013-06-06 2015-01-20 Открытое акционерное общество "Федеральная сетевая компания Единой энергетической системы" Электроиндукционное устройство
RU2542741C1 (ru) * 2013-07-31 2015-02-27 Открытое акционерное общество "Федеральная сетевая компания Единой энергетической системы" Электромагнитный реактор
RU2688882C1 (ru) * 2018-08-27 2019-05-23 Федеральное государственное бюджетное образовательное учреждение высшего образования "Вятский государственный университет" (ВятГУ) Управляемый шунтирующий реактор-автотрансформатор

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0657902A1 (fr) * 1993-12-13 1995-06-14 Matsushita Electric Industrial Co., Ltd. Bobine pour la correction de la linéarité horizontale
WO1997020328A1 (fr) * 1995-11-29 1997-06-05 Georgy Nikolaevich Alexandrov Reacteur de derivation commande
RU2125311C1 (ru) * 1997-07-11 1999-01-20 Санкт-Петербургский государственный технический университет Управляемый шунтирующий реактор
RU2136071C1 (ru) * 1998-02-13 1999-08-27 Александров Георгий Николаевич Управляемый шунтирующий реактор
RU2000104298A (ru) * 1998-10-27 2001-11-27 Георгий Николаевич Александров Управляемый реактор

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0657902A1 (fr) * 1993-12-13 1995-06-14 Matsushita Electric Industrial Co., Ltd. Bobine pour la correction de la linéarité horizontale
WO1997020328A1 (fr) * 1995-11-29 1997-06-05 Georgy Nikolaevich Alexandrov Reacteur de derivation commande
RU2125311C1 (ru) * 1997-07-11 1999-01-20 Санкт-Петербургский государственный технический университет Управляемый шунтирующий реактор
RU2136071C1 (ru) * 1998-02-13 1999-08-27 Александров Георгий Николаевич Управляемый шунтирующий реактор
RU2000104298A (ru) * 1998-10-27 2001-11-27 Георгий Николаевич Александров Управляемый реактор

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2478236C1 (ru) * 2011-09-07 2013-03-27 Брянцев Михаил Александрович Управляемый шунтирующий реактор-трансформатор
RU2631260C1 (ru) * 2016-12-09 2017-09-20 Публичное акционерное общество "Федеральная сетевая компании Единой энергетической системы" Способ компенсации тока подпитки дуги однофазного замыкания линии электропередачи

Also Published As

Publication number Publication date
AU2003277758A1 (en) 2004-05-25
RU2221297C1 (ru) 2004-01-10

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