EP4381258A1 - Temperaturmessvorrichtung und schaltanlage - Google Patents

Temperaturmessvorrichtung und schaltanlage

Info

Publication number
EP4381258A1
EP4381258A1 EP21952342.0A EP21952342A EP4381258A1 EP 4381258 A1 EP4381258 A1 EP 4381258A1 EP 21952342 A EP21952342 A EP 21952342A EP 4381258 A1 EP4381258 A1 EP 4381258A1
Authority
EP
European Patent Office
Prior art keywords
connector
sensor module
sensor
temperature
port
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
EP21952342.0A
Other languages
English (en)
French (fr)
Inventor
Yanguo CHEN
Congwen LU
Chunfa CHEN
Guoming CHUAI
Junqiang CHEN
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ABB Schweiz AG
Original Assignee
ABB Schweiz AG
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 ABB Schweiz AG filed Critical ABB Schweiz AG
Publication of EP4381258A1 publication Critical patent/EP4381258A1/de
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K1/00Details of thermometers not specially adapted for particular types of thermometer
    • G01K1/16Special arrangements for conducting heat from the object to the sensitive element
    • G01K1/18Special arrangements for conducting heat from the object to the sensitive element for reducing thermal inertia
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K1/00Details of thermometers not specially adapted for particular types of thermometer
    • G01K1/02Means for indicating or recording specially adapted for thermometers
    • G01K1/026Means for indicating or recording specially adapted for thermometers arrangements for monitoring a plurality of temperatures, e.g. by multiplexing
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B13/00Arrangement of switchgear in which switches are enclosed in, or structurally associated with, a casing, e.g. cubicle
    • H02B13/02Arrangement of switchgear in which switches are enclosed in, or structurally associated with, a casing, e.g. cubicle with metal casing
    • H02B13/035Gas-insulated switchgear
    • H02B13/065Means for detecting or reacting to mechanical or electrical defects

Definitions

  • Embodiments of the present disclosure generally relate to the field of electrical power distribution equipment, and more particularly, to a temperature sensing device and a switchgear.
  • Connectors are provided in a switchgear to connect electrical conductors. If mechanical junctions at the connectors become loose, a resistance at the connectors will increase. The increased resistance will cause a temperature rise, potentially creating an operational failure or safety hazard. Monitoring of the temperature rise in the electrical conductors would be beneficial in preventive maintenance of the performance of switchgear.
  • a temperature intelligent electronic device (TIED) integrated with a sensor may be positioned to measure the temperature of the electrical conductors. Since the sensor and the TIED are formed as an integrated assembly, each electrical conductor needs one assembly. This increases the cost for monitoring the temperature rise of all the electrical conductors. In addition, if one element, either the TIED or the sensor, breaks down, the whole assembly needs to be replaced. This increases the maintenance cost.
  • example embodiments of the present disclosure propose a temperature sensing device that has low cost and is suitable for various application scenarios due to a modular design.
  • a temperature sensing device comprising: at least one sensor module comprising a temperature sensor and a wire, the temperature sensor being configured to measure a temperature of a current carrying conductor and transmit the measured temperature via the wire, wherein a first end of the wire is connected to the temperature sensor and a second end of the wire is provided with a first connector; and an electronic module configured to receive the measured temperature from the at least one sensor module and comprising a second connector capable of being connected to the first connector.
  • the sensor module and the electronic module are separated and can be connected together via the first and second connectors. This can reduce the maintenance cost of the temperature sensing device because either of the sensor module and the electronic module can be replaced individually. Due to the use of the first and second connectors, the sensor module and the electronic module can be assembled or disassembled in a simple way. In addition, one or more sensor modules can be connected to the electronic module so that the temperature sensing device is suitable for various application scenarios.
  • the first connector is a male connector and the second connector is a female connector; or the first connector is a female connector and the second connector is a male connector.
  • each of the sensor module and the electronic module can be manufactured independently and can be connected together via the first and second connectors. In this way, the temperature sensing device is suitable for various application scenarios by increasing or decreasing the number of the sensor module.
  • the at least one sensor module comprises first and second sensor modules; the first connectors of the first and second sensor modules are connected to the second connector via a connection assembly comprising a first tee joint; and the first tee joint comprises: a first port electrically connected to the second connector via a first wire; a second port electrically connected to the first connector of the first sensor module; and a third port electrically connected to the first connector of the second sensor module.
  • the temperature sensing device have two sensor modules connected to the electronic module, such that the temperature sensing device is suitable to measure temperature of two current carrying conductors.
  • connection assembly further comprises a first two-way connector having an end electrically connected to the first connector of the second sensor module and another end electrically connected to the third port of the first tee joint via a second wire.
  • the at least one sensor module further comprises a third sensor module
  • the connection assembly further comprises a second tee joint; wherein the second tee joint comprises: a fourth port electrically connected to the third port of the first tee joint via a second wire; a fifth port electrically connected to the first connector of the second sensor module; and a sixth port electrically connected to the first connector of the third sensor module.
  • connection assembly further comprises a second two-way connector having an end electrically connected to the first connector of the third sensor module and another end electrically connected to the sixth port of the second tee joint via a third wire.
  • the third sensor module can be connected to the electronic module in a simple way.
  • each of the at least one sensor module is adapted to be attached to the current carrying conductor. With these embodiments, each sensor module thus can monitor the temperature of the respective current carrying conductor.
  • the electronic module is adapted to be secured onto the current carrying conductor.
  • the current carrying conductor comprises a cable bushing and a cable connector connected to each other; and wherein each of the at least one sensor module is capable of being tied to a position where the cable bushing is connected to the cable connector.
  • the sensor module can measure the temperature of the current carrying conductor at a position that is easy to be corroded or become loose. The measured temperature represents an indication of a physical condition of the current carrying conductor.
  • the electronic module is provided with a flexible belt configured to wrap around the current carrying conductor. In this way, the electronic module can be simply secured onto the current carrying conductor.
  • an outer surface of the at least one sensor module is capable of being connected to ground via a ground layer of the current carrying conductor.
  • a switchgear in a second aspect of the present disclosure, comprises: a current carrying conductor; at least one sensor module comprising a temperature sensor and a wire, the temperature sensor being configured to measure a temperature of the current carrying conductor and transmit the measured temperature via the wire, wherein a first end of the wire is connected to the temperature sensor and a second end of the wire is provided with a first connector; and an electronic module configured to receive the measured temperature from the at least one sensor module and comprising a second connector capable of being connected to the first connector.
  • the at least one sensor module comprises first and second sensor modules; the first connectors of the first and second sensor modules are connected to the second connector via a connection assembly comprising a first tee joint; and the first tee joint comprises: a first port electrically connected to the second connector via a first wire; a second port electrically connected to the first connector of the first sensor module; and a third port electrically connected to the first connector of the second sensor module.
  • the temperature sensing device can have two sensor modules connected to the electronic module, such that the temperature sensing device is suitable to measure temperature of two current carrying conductors.
  • the at least one sensor module further comprises a third sensor module
  • the connection assembly further comprises a second tee joint; wherein the second tee joint comprises: a fourth port electrically connected to the third port of the first tee joint via a second wire; a fifth port electrically connected to the first connector of the second sensor module; and a sixth port electrically connected to the first connector of the third sensor module.
  • Fig. 1 schematically illustrates a perspective view of a temperature sensing device according to some embodiments of the present disclosure
  • Fig. 2 schematically illustrates a perspective view of a temperature sensing device according to some embodiments of the present disclosure
  • Fig. 3 schematically illustrates a perspective view of a temperature sensing device according to some embodiments of the present disclosure.
  • Fig. 4 schematically illustrates a perspective view of a switchgear equipped with a temperature sensing device according to some embodiments of the present disclosure.
  • each electrical conductor needs one assembly. This increases the cost for monitoring the temperature rise of all the electrical conductors.
  • one element either the TIED or the sensor, breaks down, the whole assembly needs to be replaced. This increases the maintenance cost. Accordingly, there is a need for an improved temperature sensing device that is cost efficient and suitable for various application scenarios.
  • a measured temperature obtained from a temperature sensing device may provide an indication of a physical condition of the current carrying conductor.
  • Fig. 1 schematically illustrates a perspective view of a temperature sensing device according to some embodiments of the present disclosure.
  • the temperature sensing device comprises at least one sensor module 1 and an electronic module 3.
  • the at least one sensor module 1 may comprise one sensor module.
  • the sensor module 1 comprises a temperature sensor 12 and a wire 15.
  • the temperature sensor 12 is used to measure a temperature of the current carrying conductor and transmit the measured temperature via the wire 15.
  • the temperature sensor 12 may comprise a thermal conductive part 11 for contacting the current carrying conductor and a circuit 13 for generating the measured temperature based on a temperature of the thermal conductive part 11.
  • the current carrying conductor may comprise a cable bushing 4 and a cable connector 5 connected to each other.
  • the cable connector 5 may be used to connect the cable bushing 4 to a cable 9, which will be described in detail with reference to Fig. 4 hereinafter.
  • each sensor module 1 may be tied to a position where the cable bushing 4 is connected to the cable connector 5. Alternatively, each sensor module 1 may be attached to a position where the cable connector 5 is connected to the cable 9.
  • a first end of the wire 15 is connected to the temperature sensor 12, for example to the circuit 13.
  • a second end of the wire 15 is provided with a first connector 150.
  • the electronic module 3 comprises a second connector 31.
  • the second connector 31 is suitable to be connected to the first connector 150 such that the temperature sensor 12 may transmit the measured temperature to the electronic module 3 via the wire 15.
  • the sensor module 1 and the electronic module 3 are separated and can be connected together via the first connector 150 and the second connector 31. This can reduce the maintenance cost of the temperature sensing device because either of the sensor module 1 and the electronic module 3 can be replaced individually. Due to the use of the first connector 150 and the second connector 31, the sensor module 1 and the electronic module 3 can be assembled or disassembled in a simple way. In addition, one or more sensor modules 1 can be connected to the electronic module 3 so that the temperature sensing device is suitable for various application scenarios.
  • the first connector 150 is a male connector and the second connector 31 is a female connector.
  • the first connector 150 is a female connector and the second connector 31 is a male connector.
  • each of the sensor module 1 and the electronic module 3 can be manufactured independently and can be connected together via the first connector 150 and the second connector 31. In this way, the temperature sensing device is suitable for various application scenarios by increasing or decreasing the number of the sensor module 1.
  • the electronic module 3 may send the received temperature to a remote receiver for further processing.
  • the electronic module 3 can be secured onto the current carrying conductor.
  • the electronic module 3 may comprise a flexible belt 2 for wrapping around the current carrying conductor so as to attach the electronic module 3 onto the current carrying conductor.
  • the electronic module 3 may comprise a transformer (not shown) for supplying power to a data processing circuit of the electronic module 3.
  • the flexible belt 2 may be a flexible ferromagnetic belt which forms a transformer core to concentrate magnetic flux produced by the current carrying conductor. The magnetic flux concentrated in the flexible belt 2 may induce an alternating current in a secondary coil (not shown) of the transformer by means of electromagnetic induction. In this way, the transformer of the electronic module 3 can supply power to the data processing circuit, thereby eliminating the need for a battery.
  • Fig. 2 schematically illustrates a perspective view of a temperature sensing device according to some embodiments of the present disclosure.
  • the at least one sensor module 1 comprises first and second sensor modules 1A, 1B.
  • the first connectors 150 of the first and second sensor modules 1A, 1B are connected to the second connector 31 via a connection assembly.
  • the connection assembly comprises a first tee joint 60.
  • the first tee joint 60 comprises a first port 61, a second port 62, and a third port 63.
  • the first port 61 is electrically connected to the second connector 31 via a first wire 81.
  • An end of the first wire 81 may be provided with a connector 811 suitable for connecting to the second connector 31 and another end of the first wire 81may be provided with a connector 812 suitable for connecting to the first port 61.
  • the second port 62 is electrically connected to the first connector 150 of the first sensor module 1A.
  • the third port 63 is electrically connected to the first connector 150 of the second sensor module 1B.
  • the temperature sensing device have two sensor modules connected to the electronic module 3, such that the temperature sensing device is suitable to measure temperature of two current carrying conductors.
  • the connection assembly further comprises a first two-way connector 820 having an end electrically connected to the first connector 150 of the second sensor module 1B and another end electrically connected to the third port 63 of the first tee joint 60 via a second wire 82.
  • an end of the second wire 82 may be provided with a connector 821 suitable for connecting to the third port 63 and another end of the second wire 82 may be provided with a connector 822 suitable for connecting to the first two-way connector 820.
  • the number of the sensor module can be increased due to the use of the connection assembly. Since the connection assembly is provided for connecting the sensor module (s) to the electronic module 3, the sensor module 3 can be a standardized product, which will reduce the cost of the sensor module 3.
  • Fig. 3 schematically illustrates a perspective view of a temperature sensing device according to some embodiments of the present disclosure.
  • the at least one sensor module 1 further comprises a third sensor module 1C
  • the connection assembly further comprises a second tee joint 70.
  • the second tee joint 70 comprises a fourth port 71, a fifth port 72 and a sixth port 73.
  • the fourth port 71 is electrically connected to the third port 63 of the first tee joint 60 via the second wire 82.
  • the fifth port 72 electrically connected to the first connector 150 of the second sensor module 1B.
  • the sixth port 73 is electrically connected to the first connector 150 of the third sensor module 1C.
  • the number of the sensor module can be further increased due to the use of the connection assembly. Since the connection assembly is provided for connecting the sensor module (s) to the electronic module, the sensor module can be a standardized product, which will reduce the cost of the sensor module.
  • connection assembly further comprises a second two-way connector 830.
  • the second two-way connector 830 comprises an end electrically connected to the first connector 150 of the third sensor module 1C and another end electrically connected to the sixth port 73 of the second tee joint 70 via a third wire 83.
  • an end of the third wire 83 may be provided with a connector 831 suitable for connecting to the sixth port 73 and another end of the third wire 83 may be provided with a connector 832 suitable for connecting to the second two-way connector 830.
  • the temperature sensing device discussed above may be used in a switchgear.
  • Fig. 4 schematically illustrates a perspective view of a switchgear equipped with a temperature sensing device according to some embodiments of the present disclosure.
  • the switchgear comprises a current carrying conductor for transmitting power.
  • the current carrying conductor may comprise a cable bushing 4, a cable connector 5.
  • the cable connector 5 can be used to connect the cable bushing 4 to the cable 9.
  • the temperature sensing device may be arranged to measure temperature of the current carrying conductor.
  • the temperature sensing device comprises at least one sensor module 1.
  • Each sensor module 1 may be attached to the current carrying conductor for sensing the temperature thereof.
  • a strapping tap 7 can be used to attach the at least one sensor module 1 to the current carrying conductor.
  • the temperature sensing device further comprises the electronic module 3 described herein for receiving the measured temperature from the at least one sensor module 1 and optionally sending the received temperature to a remote receiver.
  • the flexible belt 2 of the electronic module 3 may wrap around the current carrying conductor so as to attach the electronic module 3 onto the current carrying conductor.
  • the switchgear may comprise one or more sensor module 1 and one electronic module 3.
  • the switchgear may comprise three sensor modules 1A, 1B, 1C connected to the electronic module 3. As shown in Fig. 4, there may be three cable bushing 4, three cable connectors 5, and three cables 9 in the switchgear.
  • the temperature sensing device comprises three sensor module 1A, 1B, 1C and one electronic module 3.
  • the electronic module 3 can be attached to any one of the three cable connectors 5.
  • Each of the sensor modules 1A, 1B, 1C is used to measure the temperature of the corresponding cable connector 5.
  • each of the sensor modules 1A, 1B, 1C may be attached to a position where the cable connector 5 is connected to the cable 9.
  • an outer surface of the at least one sensor module 1 can be connected to ground via a ground layer of the current carrying conductor, for example, via a ground layer of the cable connector 5.
  • a ground wire 91 may be used to connect the outer surface of the at least one sensor module 1 to the ground layer of the current carrying conductor.
  • the switchgear may comprise the temperature sensing device as shown in Fig. 1 or Fig. 2. In these embodiments, only one or two current carrying conductor is equipped with the sensor module. In other embodiments, the switchgear may comprise a temperature sensing device having four or more sensor modules.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Measuring Temperature Or Quantity Of Heat (AREA)
EP21952342.0A 2021-08-05 2021-08-05 Temperaturmessvorrichtung und schaltanlage Pending EP4381258A1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2021/111014 WO2023010456A1 (en) 2021-08-05 2021-08-05 Temperature sensing device and switchgear

Publications (1)

Publication Number Publication Date
EP4381258A1 true EP4381258A1 (de) 2024-06-12

Family

ID=85154115

Family Applications (1)

Application Number Title Priority Date Filing Date
EP21952342.0A Pending EP4381258A1 (de) 2021-08-05 2021-08-05 Temperaturmessvorrichtung und schaltanlage

Country Status (3)

Country Link
EP (1) EP4381258A1 (de)
CN (1) CN117413163A (de)
WO (1) WO2023010456A1 (de)

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6894254B2 (en) * 2000-04-20 2005-05-17 Mks Instruments, Inc. Heater control system with combination modular and daisy chained connectivity and optimum allocation of functions between base unit and local controller modules
CN203405292U (zh) * 2013-04-28 2014-01-22 Abb技术有限公司 中压断路器用嵌入式无线测温装置和相应的中压断路器
CN205670057U (zh) * 2016-06-14 2016-11-02 陕西理工学院 一种高压开关设备触头温度无线监测装置
CN111602039B (zh) * 2018-03-12 2022-12-27 Abb瑞士股份有限公司 用于监测连接到气体绝缘开关设备的电缆的电缆接头的温度的装置和方法
CN208805294U (zh) * 2018-09-25 2019-04-30 Abb 瑞士股份有限公司 用于中压断路器的非侵入式测温装置及中压断路器
KR102161215B1 (ko) * 2019-11-06 2020-09-29 고려전자주식회사 전지모듈용 온도센서 및 이를 포함하는 전지모듈

Also Published As

Publication number Publication date
CN117413163A (zh) 2024-01-16
WO2023010456A1 (en) 2023-02-09

Similar Documents

Publication Publication Date Title
US7230414B2 (en) Current sensor that includes a pair of segments
US10079619B2 (en) Wireless batteryless data processing unit
US10401416B2 (en) Electrical cable link apparatus and electrical cable system comprising the apparatus
CN104965109A (zh) 用于测量在低压配电器的导体中流动的电流的模块
US10784037B2 (en) Reactor having temperature sensor attached to terminal base unit
KR102261077B1 (ko) 전류센서 일체형 단자대
US20150310988A1 (en) Contactless Connector
EP1653582B1 (de) Verbindungssystem zwischen elektrischen hochspannungseinrichtungen
WO2023010456A1 (en) Temperature sensing device and switchgear
US8081491B2 (en) External neutral current sensor matched to a circuit breaker
EP2779200A1 (de) Messmodul für einen Sicherungsblocksockel
JP5263936B2 (ja) 変流器内蔵型電気機器及び変流器保護用短絡プラグ
DK179198B1 (en) Electricity Meter
EP2511711A1 (de) Lastüberwachung in einem elektrischen Versorgungssystem
JP4979062B2 (ja) 信号伝達回路装置
US9903902B2 (en) Electrical connector for detecting discontinuities in an electrical network
CN202978151U (zh) 一种贴附式电缆保险分接盒
KR102674474B1 (ko) 안전형 압착터미널 및 이를 구비하는 단자장치
JP6698976B1 (ja) 温度検出基板、コネクタ及び給電中継装置
EP2875513B1 (de) Verfahren und vorrichtung zur erfassung und anzeige einer sekundärwicklung eines offenen stromwandlers
CN107833736B (zh) 一种组合式高压电流互感器
CN108337755B (zh) 包含控制导线的感应加热扩展缆线
CN117706163A (zh) 一种无磁芯电流传感器
JP2015126669A (ja) 分電装置
JPS6127156Y2 (de)

Legal Events

Date Code Title Description
STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE

PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE

17P Request for examination filed

Effective date: 20231127

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR