MODULAR IED
20210367420 · 2021-11-25
Inventors
- Fredrik Alfredsson (Västerås, SE)
- Jimmy Kjellsson (Västerås, SE)
- Ryan Mackenzie (Västerås, SE)
- Mårten Olsson (Eskilstuna, SE)
- Anders Döragrip (Västerås, SE)
Cpc classification
H05K7/20163
ELECTRICITY
H02H7/26
ELECTRICITY
International classification
H02H7/26
ELECTRICITY
H05K7/14
ELECTRICITY
Abstract
The present disclosure relates to an IED configured for use as a protection relay in an electric power system. The IED comprises a plurality of cassettes connected to a backplane, with at least two cassettes mounted adjacent each other. Each of the cassettes comprises a housing profile in the form of a rectangular tube having an envelope wall of a heat conducting material, and at least one electronic card arranged in a card slot within the tube formed by the housing profile, which at least one card is electrically connected to the backplane. Adjacent cassettes are separated a distance such that air canals are formed between their respective housing profiles.
Claims
1-11. (canceled)
12. An intelligent electronic device (IED) comprising: a backplane common to a plurality of cassettes; and the plurality of cassettes, connected to the backplane and forming a matrix of cassettes with at least two cassettes mounted adjacent each other in at least one dimension of two dimensions forming a plane of the matrix; wherein each of the cassettes comprises: a housing profile in a form of a rectangular tube having an envelope wall of a heat conducting material, a front opening, a back opening, and a longitudinal axis perpendicular to the plane of the matrix; and at least one electronic card arranged in a card slot within the rectangular tube formed by the housing profile, which at least one card is electrically connected to the backplane; wherein adjacent cassettes in the matrix are separated by a distance such that at least one air canal is formed between respective housing profiles of the adjacent cassettes.
13. The IED of claim 12, further comprising a front panel that is common to the plurality of cassettes and arranged to block the front opening of each of the cassettes.
14. The IED of claim 12, wherein the housing profile of each cassette is arranged to prevent ambient air and/or dust from passing through the envelope wall.
15. The IED of claim 12, wherein the distance is within a range of 5-30 mm.
16. The IED of claim 12, wherein the distance is within a range of 8-15 mm.
17. The IED of claim 12, further comprising a frame to which the cassettes are mounted.
18. The IED of claim 12, wherein each of the cassettes comprises at least one heat sink connecting the at least one electronic card to the envelope wall providing a path for heat to be conducted from the at least one card to the envelope wall via the at least one heat sink.
19. The IED of claim 12, wherein the at least one electronic card consists of a number of electronic cards within a range of 2-12 cards.
20. The IED of claim 12, wherein the at least one electronic card consists of a number of electronic cards within a range of 6-10 cards.
21. (canceled)
22. The IED of claim 12, wherein the heat conducting material comprises or consists essentially of aluminum or copper.
23. The IED of claim 22, wherein the heat conducting material is extruded aluminum.
24. An electrical power system comprising: an electrical power line; an electrical equipment connected to the electrical power line; and an intelligent electronic device (IED) arranged as a protection relay to protect the electrical equipment from a fault current in the electrical power line, the IED comprising: a backplane common to a plurality of cassettes; and the plurality of cassettes, connected to the backplane and forming a matrix of cassettes with at least two cassettes mounted adjacent each other in at least one dimension of two dimensions forming a plane of the matrix; wherein each of the cassettes comprises: a housing profile in a form of a rectangular tube having an envelope wall of a heat conducting material, a front opening, a back opening, and a longitudinal axis perpendicular to the plane of the matrix; and at least one electronic card arranged in a card slot within the rectangular tube formed by the housing profile, which at least one card is electrically connected to the backplane; wherein adjacent cassettes in the matrix are separated by a distance such that at least one air canal is formed between respective housing profiles of the adjacent cassettes.
25. The electrical power system of claim 24, wherein the electrical power line is rated for a voltage of at least 1000 volts.
26-31. (canceled)
32. The electrical power system of claim 24, further comprising a front panel that is common to the plurality of cassettes and arranged to block the front opening of each of the cassettes.
33. The electrical power system of claim 24, wherein each of the cassettes has a back side arrangement arranged to block the back opening of the respective cassette.
34. The electrical power system of claim 24, wherein the distance is within a range of 5-30 mm.
35. The electrical power system of claim 24, wherein each of the cassettes comprises at least one heat sink connecting the at least one electronic card to the envelope wall providing a path for heat to be conducted from the at least one card to the envelope wall via the at least one heat sink.
36. The electrical power system of claim 24, wherein the at least one electronic card consists of a number of electronic cards within a range of 2-12 cards.
37. The IED of claim 12, wherein the at least one electronic card consists of a number of electronic cards within a range of 4-10 cards.
38. The IED of claim 12, wherein each of the cassettes has a back side arrangement arranged to block the back opening of the respective cassette.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Embodiments will be described, by way of example, with reference to the accompanying drawings, in which:
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
[0020] Embodiments will now be described more fully hereinafter with reference to the accompanying drawings, in which certain embodiments are shown. However, other embodiments in many different forms are possible within the scope of the present disclosure. Rather, the following embodiments are provided by way of example so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Like numbers refer to like elements throughout the description.
[0021] Embodiments of the present invention relates to an IED. The IED may be configured for control of a power grid. The power grid may typically be a high-voltage grid, e.g., rated for at least 1000 V, but the power grid may alternatively be rated for medium or low voltage, e.g., in a distribution power grid or in industry. The IED may be configured for use as a protection relay in an electric power system, e.g., used for protecting electrical equipment connected to the power grid. Alternatively, the IED may be configured as a remote terminal unit, as a merging unit, and/or as a circuit breaker controller.
[0022] For example, the IED may act as a protection relay for electrical equipment, e.g., a transformer, by monitoring a voltage and/or current in a power line connected to the electrical equipment and, in case a fault current is detected, e.g., send a command to open a circuit breaker to clear the fault current. In some embodiments of the present invention, the electrical equipment comprises a transformer substation. Embodiments of the IED of the present disclosure may be particularly useful for protecting a transformer.
[0023]
[0024] An IED 1 may comprise any number of cassettes 3 arranged in a one- or two-dimensional (x and y dimensions as in
[0025] The cassettes 3 may be connected to a backplane 90 (see
[0026]
[0027] By “envelope wall” is here intended the annular longitudinal wall forming the rectangular tube of the housing 4, excluding any transverse front or back side arrangement of the cassette 3. The envelope wall 5 is preferably arranged without ventilation holes, to prevent dirt and small animals from entering the cassette, e.g., preventing ambient air or dust from passing through the envelope wall and into the cassette 3/housing 4, i.e., the envelope wall is not provided with any holes which may allow air to pass there through. For instance, the envelope wall may be made in one continuous piece, or may be made from a plurality of parts, e.g., each corresponding to one, two or three sides of the rectangular tube, which may be assembled to form the envelope wall e.g., for easy mounting or removing of electronic cards in the cassette. The envelope wall 5 may e.g., be made by extrusion.
[0028]
[0029]
[0030] Similarly, each cassette 3 may be provided with a back side arrangement 11, e.g., as shown in
[0031] By means of the optional front and back side arrangements 10 and 11, in cooperation with the envelope walls 5, each of the housings 4 may be substantially closed, preventing dust and/or other pollutants from entering the housing.
[0032]
[0033]
[0034] The ability to effectively cool an IED 1 may be fundamental, especially when e.g., arranged outdoors in a warm and humid climate, which may be when the risk of corrosive agents entering the IED via air or vermin may be most pronounced.
[0035]
[0036] In some embodiments of the present invention, the distance d is within the range of 5-30 mm, e.g., 8-15 mm. However, the distance d may be any suitable distance which allows convection flow of air between the cassettes for cooling thereof.
[0037] In some embodiments of the present invention, the at least one electronic card 12 consists of a number of electronic cards within the range of 2-12 cards, preferably 4-10 cards or 6-10 cards, e.g., 8 cards. For simplicity, it may be convenient to fit as many cards as possible per cassette, but fewer cards are preferable to reduce the heat generated per cassette, which leads to a trade-off when determining the number of cards per cassette. The card holders 9, and thus the cards 12 mounted therein, may e.g., be arranged at a distance from each other within the range of 10-30 mm, e.g., 15-25 mm.
[0038] In some embodiments of the present invention, the heat conducting material comprises or consists of a heat conducting metal, e.g., comprising any of aluminum (Al) and copper (Cu), which are useful conducting materials, but any suitable heat conducting material may be used, such as alloys comprising Ag, Al and/or Cu or other. In some embodiments, a heat conducting material consisting of Al is preferred. In some embodiments, the heat conducting material is extruded aluminum.
[0039] In some embodiments of the present invention, the IED 1 is mounted outdoors such that ambient rain and/or wind can directly engage outside surfaces of the respective envelope walls 5 of at least one of the cassettes 3 in the IED. Embodiments of the invention may be especially suitable for use in environments where it is undesirable with ventilation holes in the envelope walls due to the risk of pollutants entering the cassettes and compromising the cards therein.
[0040] In accordance with some other embodiments of the present invention, there is provided an IED 1 comprising a frame 2 and a plurality of cassettes 3 mounted to the frame, forming a two-dimensional matrix of cassettes. Each of the cassettes comprises a profile 4 in the form of a rectangular tube, a front side arrangement 10 arranged to block the front opening 6 of the housing profile tube, a back side arrangement 11 arranged to block the back opening 7 of the housing profile tube, at least one electronic card 12 arranged in a plane perpendicular to the plane x,y of the matrix within the tube formed by the housing profile, a heat sink 13 connecting the at least one electronic card to the profile such that heat can be conducted from the at least one card to the profile via the heat sink. Adjacent cassettes in the matrix are separated a distance d such that air canals 14 are formed between their respective profiles.
[0041] In accordance with some embodiments, there is provided an IED 1. The IED may be arranged for control of a power grid, e.g., for automation of a power grid. The power grid may typically be a high-voltage grid, e.g., rated for at least 1000 V, but the power grid may alternatively be rated for medium or low voltage, e.g., in a distribution power grid or in industry. The IED may be configured for use as a protection relay in an electric power system, e.g., used for protecting electrical equipment connected to the power grid. Alternatively, the IED may be configured as a remote terminal unit, as a merging unit, and/or as a circuit breaker controller. The IED comprises a plurality of cassettes 3 connected to a backplane 90, with at least two cassettes mounted adjacent each other. Each of the cassettes comprises a housing profile 4 in the form of a rectangular tube having an envelope wall 5 of a heat conducting material, and at least one electronic card 12 arranged in a card slot 9 within the tube formed by the housing profile, which at least one card is electrically connected to the backplane. Adjacent cassettes are separated by a distance d such that air canals 14 are formed between their respective housing profiles.
[0042] The present disclosure has mainly been described above with reference to a few embodiments. However, as is readily appreciated by a person skilled in the art, other embodiments than the ones disclosed above are equally possible within the scope of the present disclosure, as defined by the appended claims.