Power supply unit and on-board power supply network of an aircraft or spacecraft
11220349 · 2022-01-11
Assignee
Inventors
Cpc classification
B64D2221/00
PERFORMING OPERATIONS; TRANSPORTING
Y02T50/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B64D41/00
PERFORMING OPERATIONS; TRANSPORTING
H02J4/00
ELECTRICITY
International classification
Abstract
A power supply unit includes a housing having at least one input terminal and at least one output terminal, an AC-DC converter which is arranged in the housing and which is connected to the input terminal, a DC-DC converter which is arranged in the housing and which is connected to the output terminal; and a capacitor which forms a structural part of the housing. Furthermore, an on-board power supply network of an aircraft or spacecraft is also described.
Claims
1. A power supply unit comprising: a housing having at least one input terminal and at least one output terminal; an AC-DC converter arranged in the housing and connected to the input terminal; and a DC-DC converter arranged in the housing and connected to the output terminal, wherein a structural part of the housing is configured to form a capacitor and as a part of housing for covering the AC-DC converter and the DC-DC converter.
2. The power supply unit as claimed in claim 1, wherein the capacitor is configured in the form of a supercapacitor.
3. The power supply unit as claimed in claim 2, wherein the supercapacitor has a laminate made of fiber-reinforced plastic.
4. The power supply unit as claimed in claim 3, wherein the supercapacitor comprises a separator layer, two electrode layers comprising the separator layer, two collecting layers comprising the electrode layers, and two protective layers comprising the collecting layers.
5. The power supply as claimed in claim 4, wherein the separator layer is made of fiberglass reinforced plastic.
6. The power supply as claimed in claim 4, wherein the two electrode layers are made of carbon fiber reinforced plastic impregnated with carbon aerogel.
7. The power supply as claimed in claim 4, wherein the two collecting layers are made of graphene.
8. The power supply as claimed in claim 4, wherein the two protective layers are made of thermoplast.
9. The power supply unit as claimed in claim 1, wherein the housing has at least one outer wall, and the capacitor forms at least one structural part of the at least one outer wall.
10. The power supply unit as claimed in claim 9, wherein the at least one outer wall is configured as a replaceable outer wall.
11. The power supply unit as claimed in claim 1, wherein the capacitor is electrically connected between the AC-DC converter and the DC-DC converter.
12. The power supply unit as claimed in claim 1, wherein the capacitor is configured to be connected to an external power network.
13. An on-board power supply network of an aircraft or spacecraft, comprising: an AC network; a power supply unit as claimed in claim 1, wherein the at least one input of the power supply unit is connected to the AC network; and at least one DC electrical load connected to the at least one output terminal of the power supply unit.
14. The on-board power supply network as claimed in claim 13 wherein the capacitor is configured to be connected to an external power network, and wherein the system further comprises an emergency network, wherein the emergency network is connected to the capacitor of the power supply unit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention will be described in greater detail below, based on the exemplary embodiments specified in the schematic figures. The following are shown:
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DETAILED DESCRIPTION
(7) The attached figures are intended to convey additional understanding of the embodiments of the present invention. They illustrate embodiments and are used in conjunction with the description for explaining principles and concepts of the present invention. Other embodiments and many of the aforementioned advantages result with respect to the drawings. The elements of the drawings are not necessarily true to scale with respect to one other.
(8) In the figures of the drawing, identical, functionally identical and identically acting elements, features and components are respectively provided with the same reference characters, unless stated otherwise.
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(13) In the exemplary embodiment depicted in
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(15) The replaceable side wall 113 has a central layer made of fiberglass-reinforced plastic which acts as a separator layer 1034 of the supercapacitor. Layers made of carbon-fiber-reinforced plastic are respectively arranged on both sides of the separator layer 1034, and are impregnated with a carbon aerogel and thereby act as electrode layers 1033 of the supercapacitor. Graphene layers are respectively arranged on the outer sides of the electrode layers 1033, which act as collecting layers 1032 of the supercapacitor. Protective layers 1031 made of a thermoplast are arranged on the outer sides of the collecting layers 1032.
(16) In this way, the replaceable side wall 113 unifies a combination made up of a structural component of the housing 110 and a capacitor 103 of the power supply unit 100. As a result, the size and weight of the power supply unit 100 can be reduced in a highly advantageous manner.
(17)
(18) The AC-DC converter 101 converts the AC voltage of the AC network 201 into DC voltage via which the capacitor 103 is charged. The DC-DC converter 102 thereupon converts the voltage present at the capacitor 103 in such a way that the DC electrical loads 202 can be supplied with electricity.
(19) By means of this arrangement, the DC electrical loads 202 can continue to be supplied with electricity even in the case of a failure of the AC network 201, at least for a certain period.
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(21) While at least one exemplary embodiment of the present invention(s) is disclosed herein, it should be understood that modifications, substitutions and alternatives may be apparent to one of ordinary skill in the art and can be made without departing from the scope of this disclosure. This disclosure is intended to cover any adaptations or variations of the exemplary embodiment(s). In addition, in this disclosure, the terms “comprise” or “comprising” do not exclude other elements or steps, the terms “a” or “one” do not exclude a plural number, and the term “or” means either or both. Furthermore, characteristics or steps which have been described may also be used in combination with other characteristics or steps and in any order unless the disclosure or context suggests otherwise. This disclosure hereby incorporates by reference the complete disclosure of any patent or application from which it claims benefit or priority.
LIST OF REFERENCE CHARACTERS
(22) 100 Power supply unit 101 AC-DC converter 102 DC-DC converter 103 Capacitor 110 Housing 111 Input terminal 112 Output terminal 113 Outer wall 114 Top 115 Frame 116 Bottom 200 On-board power supply network 201 AC network 202 DC electrical load 203 Emergency network