Substrate-integrated waveguide slot antenna with metasurface
11038276 · 2021-06-15
Assignee
Inventors
Cpc classification
H01Q15/0086
ELECTRICITY
International classification
H01Q15/00
ELECTRICITY
Abstract
Disclosed is a substrate-integrated waveguide slot antenna including a lower substrate having a substrate-integrated waveguide structure, the lower substrate being provided in the upper surface thereof with at least one slot, whereby an electromagnetic wave is guided by the substrate-integrated waveguide structure and is emitted through the slot, and an upper substrate formed on the lower substrate, the upper substrate having a metasurface configured such that a plurality of unit cells is arranged at predetermined intervals, whereby the electromagnetic wave dispatched through the slot is reemitted by the metasurface.
Claims
1. A substrate-integrated waveguide slot antenna comprising: a lower substrate having a substrate-integrated waveguide structure, the lower substrate having a plurality of slots provided in an upper surface of the lower substrate, whereby an electromagnetic wave is guided by the substrate-integrated waveguide structure and is emitted through the plurality of slots; and an upper substrate formed on the lower substrate, the upper substrate having a metasurface configured such that a plurality of unit cells are arranged at predetermined intervals, whereby the electromagnetic wave dispatched through the plurality of slots is reemitted by the metasurface, wherein the lower substrate comprises: a first layer extending in a first direction and a second direction perpendicular to the first direction; a second layer located on the first layer and extending in the first direction and the second direction, the plurality of slots being formed in the second layer; and a plurality of vias, each of the plurality of vias extending in a vertical direction to connect the first layer and the second layer to each other, the plurality of vias being arranged at predetermined intervals to guide an electromagnetic wave, the vertical direction being perpendicular to the first direction and the second direction, wherein the plurality of unit cells of the upper substrate include first unit cells arranged in the second direction, center unit cells arranged in the second direction, and second unit cells arranged in the second direction, and the center unit cells being disposed between the first unit cells and the second unit cells and arranged along a center line of the second layer, wherein the plurality of vias include first vias corresponding to the first unit cells and disposed below the first unit cells and arranged in the second direction, and second vias corresponding to the second unit cells and disposed below the second unit cells and arranged in the second direction, wherein the plurality of slots are disposed below only the center unit cells among the plurality of unit cells and arranged in the second direction and parallel to the center line of the second layer, wherein each of the plurality of slots extends in the second direction and is offset from the center line of the second layer, and wherein two adjacent slots among the plurality of slots are offset in opposite directions with respect to the center line of the second layer.
2. The substrate-integrated waveguide slot antenna according to claim 1, wherein the lower substrate further comprises an introduction portion formed at one side of the lower substrate in the second direction in which the plurality of vias are arranged to allow an electromagnetic wave to be introduced therethrough.
3. The substrate-integrated waveguide slot antenna according to claim 1, wherein the metasurface is configured such that a plurality of metal conductors are arranged while having periods at predetermined intervals, each of the plurality of metal conductors being formed so as to have a predetermined shape.
4. The substrate-integrated waveguide slot antenna according to claim 3, wherein the metasurface is configured such that a plurality of quadrangular metal conductors are arranged in a two-dimensional plane at predetermined intervals.
5. A substrate-integrated waveguide slot antenna comprising: a lower substrate having a substrate-integrated waveguide structure, the lower substrate having a plurality of slots provided in an upper surface of the lower substrate; and an upper substrate formed on the lower substrate, the upper substrate having a metasurface configured such that a plurality of unit cells are arranged at predetermined intervals, wherein the lower substrate comprises: a first layer extending in a first direction and a second direction perpendicular to the first direction; a second layer located on the first layer and extending in the first direction and the second direction, the plurality of slots being formed in the second layer; and a plurality of vias, each of the plurality of vias extending in a vertical direction to connect the first layer and the second layer to each other, the plurality of vias being arranged at predetermined intervals to guide an electromagnetic wave, the vertical direction being perpendicular to the first direction and the second direction, wherein the plurality of unit cells of the upper substrate include first unit cells arranged in the second direction, center unit cells arranged in the second direction, and second unit cells arranged in the second direction, and the center unit cells being disposed between the first unit cells and the second unit cells and arranged along a center line of the second layer, wherein the plurality of vias include first vias corresponding to the first unit cells and disposed below the first unit cells and arranged in the second direction, and second vias corresponding to the second unit cells and disposed below the second unit cells and arranged in the second direction, wherein the plurality of slots are disposed below only the center unit cells among the plurality of unit cells and arranged in the second direction and parallel to the center line of the second layer, wherein each of the plurality of slots extends in the second direction and is offset from the center line of the second layer, and wherein two adjacent slots among the plurality of slots are offset in opposite directions with respect to the center line of the second layer.
6. The substrate-integrated waveguide slot antenna according to claim 5, wherein an electromagnetic wave introduced into the substrate-integrated waveguide structure is guided by the substrate-integrated waveguide structure and is emitted through the plurality of slots, and the electromagnetic wave emitted through the plurality of slots is reemitted through the metasurface of the upper substrate.
7. The substrate-integrated waveguide slot antenna according to claim 5, wherein the lower substrate further comprises an introduction portion formed at one side of the lower substrate in a direction in which the plurality of vias are arranged to allow an electromagnetic wave to be introduced therethrough.
8. The substrate-integrated waveguide slot antenna according to claim 5, wherein the metasurface is configured such that a plurality of metal conductors are arranged in a two-dimensional plane at predetermined intervals, each of the plurality of metal conductors being formed so as to have a predetermined shape.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The patent or application file contains at least one drawing executed in color. Copies of this patent or patent application publication with color drawing(s) will be provided by the Office upon request and payment of the necessary fee.
(2) The above and other objects, features and other advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(14) It should be noted that terms or words used in this specification and the claims are not to be interpreted as having ordinary and dictionary-based meanings but as having meanings and concepts coinciding with the technical idea of the present invention based on the principle that the inventors may properly define the concepts of the terms in order to explain the invention in the best way.
(15) In the case in which a part “includes” a component, throughout this specification, this means that the part may not exclude another component but may further include another component unless otherwise mentioned. In addition, the term “unit,” “part,” “module,” or “device” used herein signifies one unit that processes at least one function or operation, and may be realized by hardware, software, or a combination thereof.
(16) Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
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(18) Referring to
(19) Next, the lower substrate 100 of the slot antenna 1 having the substrate-integrated waveguide structure according to the embodiment of the present invention will be described with reference to
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(21) As shown in
(22) Although three slots 110 are shown in
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(24) Referring to
(25) In the lower substrate 100 having the substrate-integrated waveguide structure described above, an electromagnetic wave may be introduced through port 1, may be guided by the plurality of vias, and may be output through port 2.
(26) Referring back to
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(28) Referring to
(29) A metamaterial exhibits dielectric characteristics that do not exist in the natural world through arrangement of conductors having a periodic structure. Since the metamaterial exhibits a refractive index approximate to 0 and various dispersion properties, it is possible to increase the bandwidth and gain of an antenna in the case in which the metamaterial is used as a cover. In this embodiment, the upper substrate 200 having the metasurface is stacked on the lower substrate 100, whereby it is possible to overcome limitations in the gain and bandwidth of the slot antenna 1 having the substrate-integrated waveguide structure.
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(34) As is apparent from the above description, according to the embodiment of the present invention described above, the slot antenna includes a lower substrate having a substrate-integrated waveguide structure and an upper substrate having a metasurface, whereby the bandwidth and the gain of the slot antenna are increased.
(35) Although the present invention has been described in detail based on preferred embodiments, those skilled in the art will appreciate that the present invention is not limited thereto and that various modifications, additions, and substitutions are possible without departing from the scope and spirit of the invention as disclosed in the accompanying claims. Consequently, the true technical protection scope of the present invention should be interpreted by the following claims, and all technical concepts included in a range equivalent thereto should be interpreted as falling within the scope of right of the present invention.
(36) The antenna having the substrate-integrated waveguide structure according to the embodiment of the present invention is applicable not only to satellites but also to fields other than satellites, such as wireless communication.