COVER APPARATUS FOR OPTIMAL BEAM IMPLEMENTATION FOR ANTENNA IN WIRELESS COMMUNICATION SYSTEM
20230030388 · 2023-02-02
Inventors
- Sanghoon PARK (Gyeonggi-do, KR)
- Juneseok LEE (Gyeonggi-do, KR)
- Dohyuk HA (Gyeonggi-do, KR)
- Jinsu HEO (Gyeonggi-do, KR)
- Youngju LEE (Gyeonggi-do, KR)
Cpc classification
H01Q1/421
ELECTRICITY
International classification
Abstract
The present disclosure relates to a communication technique for converging, with IoT technology, a 5G communication system for supporting a higher data transfer rate beyond the 4G system, and a system therefor. The present disclosure may be applied to intelligent services (for example, smart homes, smart buildings, smart cities, smart cars or connected cars, healthcare, digital education, retail businesses, security- and safety-related services, etc.) on the basis of 5G communication technology and IoT-related technology. Disclosed is a cover device for protecting an antenna device which is mounted in an electronic device to radiate a beam in an ultrahigh-frequency band, the cover device comprising: a cover frame including an open window region corresponding to a radiation region of the antenna device; and a thickness compensation structure disposed in the window region on the cover frame and having a different thickness according to the frequency band of the beam radiated from the antenna device.
Claims
1. A cover device for protecting an antenna device for emitting a beam of an ultrahigh frequency band built in an electronic device, the cover device comprising: a cover frame comprising an open window area corresponding to an emission area of the antenna device; and a thickness compensation structure positioned in the window area on the cover frame and having a different thickness according to a frequency band of the beam emitted from the antenna device.
2. The cover device of claim 1, wherein the window area is positioned in at least one area of an upper part, a lower part, a front part, or a side part of the cover frame.
3. The cover device of claim 1, wherein the thickness compensation structure comprises at least one of an externally protruding structure or a stacked structure.
4. The cover device of claim 1, wherein the thickness compensation structure comprises an assembled panel and a coupling part coupled to the assembled panel.
5. The cover device of claim 1, wherein the thickness compensation structure is a panel structure comprising a side portion of the cover frame.
6. The cover device of claim 1, wherein the thickness compensation structure comprises a functional layer having a periodic or aperiodic pattern.
7. The cover device of claim 1, wherein the thickness compensation structure is positioned in the window area inside the cover frame by at least one method of joining, adhesion, fastening, fusion, or coupling.
8. A cover device for protecting an antenna device for emitting a beam of an ultrahigh frequency band built in an electronic device, the cover device comprising: a cover frame corresponding to an emission area of the antenna device and comprising a first area having a predetermined thickness; and a thickness compensation structure positioned in a first area on the cover frame and having a different thickness according to a frequency band of the beam emitted from the antenna device.
9. The cover device of claim 8, wherein the first area is positioned in at least one area of an upper part, a lower part, a front part, or a side part of the cover frame.
10. The cover device of claim 8, wherein the predetermined thickness of the first area is an optimized thickness for a highest ultrahigh frequency band.
11. The cover device of claim 8, wherein the thickness compensation structure is a stacked structure.
12. The cover device of claim 8, wherein the thickness compensation structure comprises an assembled panel and a coupling part coupled to the assembled panel.
13. The cover device of claim 8, wherein the thickness compensation structure comprises a functional layer having a periodic or aperiodic pattern.
14. The cover device of claim 8, wherein the functional layer having the periodic pattern has a flat plate reinforcement structure having at least one periodic structure of a round edge periodic structure, a circular periodic structure, a vertical periodic structure, or a horizontal periodic structure.
15. The cover device of claim 8, wherein the thickness compensation structure is positioned in the window area inside the cover frame by at least one method of joining, adhesion, fastening, fusion, or coupling.
16. The cover device of claim 1, wherein the thickness compensation structure comprises at least one of a thermoplastic material, a thermosetting material, or an inorganic material.
17. The cover device of claim 6, wherein the functional layer having the periodic pattern has a flat plate reinforcement structure having at least one periodic structure of a round edge periodic structure, a circular periodic structure, a vertical periodic structure, or a horizontal periodic structure.
18. The cover device of claim 6, wherein the functional layer may be formed according to at least one processing technique of extrusion, injection molding, compression molding, extrusion blow molding, blow molding, forming expansion molding, extrusion laminating, laminating molding, casting, vacuum forming, press, rotational molding, or compression.
19. The cover device of claim 8, wherein the thickness compensation structure comprises at least one of a thermoplastic material, a thermosetting material, or an inorganic material.
20. The cover device of claim 13, wherein the functional layer may be formed according to at least one processing technique of extrusion, injection molding, compression molding, extrusion blow molding, blow molding, forming expansion molding, extrusion laminating, laminating molding, casting, vacuum forming, press, rotational molding, or compression.
Description
BRIEF DESCRIPTION OF DRAWINGS
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MODE FOR THE INVENTION
[0030] Advantages and features of the disclosure, and a method of achieving them will become apparent with reference to the embodiments described below in detail in conjunction with the accompanying drawings. However, the disclosure is not limited to the embodiments disclosed below, but may be implemented in various different forms, and only these embodiments enable the disclosure to be complete, and are provided to fully inform the scope of the disclosure to those of ordinary skill in the art to which the disclosure pertains, and the disclosure is only defined by the scope of the claims. Like reference numerals refer to like components throughout the specification.
[0031] Hereinafter, an operating principle of the disclosure will be described in detail with reference to the accompanying drawings. In the following description, in describing the disclosure, when it is determined that a detailed description of a related well-known function or configuration may unnecessarily obscure the gist of the disclosure, a detailed description thereof will be omitted. Hereinafter, an embodiment of the disclosure will be described with reference to the accompanying drawings. Terms described below are terms defined in consideration of functions in the disclosure, which may vary according to intentions or customs of users and operators. Therefore, the definition should be made based on the content throughout this specification.
[0032]
[0033] As described above, because the ultrahigh frequency band is sensitive to a radio wave environment, in a 5G communication system, various preliminary reviews are required from a material to a thickness of a cover when implementing the base station.
[0034] In particular, when the base station is implemented, a cover device for an ultrahigh frequency band is sensitive to a dielectric constant and dielectric loss of the cover material even though it has the same external shape, thus, it is necessary to optimize a thickness of the cover device according to a band of the antenna. That is, in a current 5G communication system supporting the ultrahigh frequency band, when the base station is implemented, the thickness of the cover device optimized for each frequency band may vary; thus, each cover mold having an optimized thickness for each frequency band is being produced.
[0035] For example, as illustrated in
[0036] A thickness of an optimal cover device according to the frequency band of the beam emitted from the antenna device described in this specification is only one example derived according to various simulation results, and is not limited to the numerical value of the thickness.
[0037] Conventionally, each mold for a cover device having an optimal thickness for each frequency band was produced, and each cover device for an ultrahigh frequency band for each frequency band had no choice but to be produced. For example, it was necessary to produce a radome mold for 28 GHz having a thickness of 3.5 mm, a radome mold for 39 GHz having a thickness of 2.5 mm, and the like, respectively.
[0038] As illustrated in
[0039]
[0040] As illustrated in
[0041] The window area 310 according to the first embodiment of the disclosure corresponds to an emission area of an antenna in the base station device and may vary according to a position and area of the antenna device built in the base station device. This will be described in detail with reference to
[0042] As illustrated in
[0043] For example, when a frequency band of a beam emitted from the antenna device built in the base station device is 28 GHz, by positioning the thickness compensation structure 320a having a thickness d1 of 3.5 mm in the window area, it is possible to implement the cover device 330a having an optimal thickness for 28 GHz. Further, when a frequency band of a beam emitted from the antenna device built in the base station device is 39 GHz, by positioning the thickness compensation structure 320b having a thickness d2 of 2.5 mm in the window area, it is possible to implement the cover device 330b having an optimal thickness for 39 GHz.
[0044] Accordingly, the cover device according to various embodiments of the disclosure may position a thickness compensation structure having an optimal thickness for each frequency band in one cover frame, thereby having an optimal thickness for each frequency band.
[0045] That is, when implementing a base station having the same external shape, by changing only the thickness compensation structure, the cover device of the disclosure can implement a cover device for each of various frequency bands.
[0046] Therefore, in the cover device according to various embodiments of the disclosure, by positioning a thickness compensation structure having an optimal thickness in a window area inside a cover frame without necessity to newly produce a separate mold so as to have an optimal thickness for each frequency band, as in the prior art, it is possible to flexibly have an optimal thickness for each of various frequency bands.
[0047] For example, because the cover devices 330a and 330b illustrated in
[0048]
[0049]
[0050] As illustrated in
[0051] A window area included in a cover frame according to the first embodiment of the disclosure corresponds to an emission area of an antenna inside a base station device and may vary according to a position and area of an antenna device built in the base station device.
[0052] For example, as illustrated in
[0053] As illustrated in
[0054] As illustrated in
[0055]
[0056] A front assembly type cover frame 600 according to various embodiments of the disclosure may be a cover device by itself as an assembly concept.
[0057] As illustrated in
[0058] For example, the panel 610 may have a flat plate reinforcement structure having a horizontal periodic structure and having the same structure as a thickness compensation structure. Various embodiments thereof will be described in detail with reference to
[0059] As illustrated in
[0060]
[0061] The thickness compensation structure according to various embodiments of the disclosure may include at least one of a thermoplastic material, a thermosetting material, or an inorganic material. For example, the thickness compensation structure according to various embodiments of the disclosure may be made of a single material or a composite material.
[0062] The thickness compensation structure according to various embodiments of the disclosure may be external protruding structures 700a and 710a, as illustrated in
[0063] The thickness compensation structure according to various embodiments of the disclosure may be positioned in a window area inside the cover frame of the disclosure using methods such as joining, adhesion, fastening, fusion, and coupling.
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[0065] The thickness compensation structure according to various embodiments of the disclosure may further include a functional layer having a periodic or aperiodic pattern so as to optimize an antenna performance.
[0066] The functional layer included in the thickness compensation structure according to various embodiments of the disclosure may be flat plate reinforcement structures 800a and 810a having a round edge periodic structure, as illustrated in
[0067] The functional layer included in the thickness compensation structure according to various embodiments of the disclosure may be generated according to various material processing techniques.
[0068] For example, at least one processing technique of extrusion, injection molding, compression molding, extrusion blow molding, blow molding, forming expansion molding, extrusion laminating, laminating molding, casting, vacuum forming, press, rotational molding, or compression may be used.
[0069]
[0070] As illustrated in
[0071] By positioning various thickness compensation structures illustrated in
[0072] The thickness compensation structure according to various embodiments of the disclosure may be positioned in a window area inside the cover frame of the disclosure using methods such as joining, adhesion, fastening, fusion, and coupling.
[0073] For example, when a thickness compensation structure 901a having an externally protruding structure illustrated in
[0074] Further, when a thickness compensation structure 903a having a stacked structure illustrated in
[0075] When a thickness compensation structure 901b having the externally protruding structure illustrated in
[0076] Further, when a thickness compensation structure 903b having a stacked structure illustrated in
[0077]
[0078] As illustrated in
[0079] The assembled front antenna cover frame 1000b illustrated in
[0080] By positioning various thickness compensation structures illustrated in
[0081] The thickness compensation structure according to various embodiments of the disclosure may be positioned in a window area inside the cover frame of the disclosure using methods such as bonding, adhesion, fastening, fusion, and coupling.
[0082] For example, when a thickness compensation structure 1001 having an externally protruding structure illustrated in
[0083] Further, when a thickness compensation structure 1003 having a stacked structure illustrated in
[0084]
[0085] As illustrated in
[0086] When a thickness compensation structure 1110 having a panel structure including a side part is coupled to a window area of the side antenna cover frame 1100 illustrated in
[0087]
[0088] As illustrated in
[0089] The cover frame according to the second embodiment of the disclosure may include a first area to which a thickness compensation structure may be added, wherein the first area may be positioned in at least one area of an upper part, a lower part, a front part, or a side part of the cover frame. Further, the first area may correspond to an emission area of the antenna device.
[0090] The cover frame 1200 according to the second embodiment of the disclosure illustrated in
[0091] As illustrated in
[0092] For example, when a frequency band of a beam emitted from the antenna device built in the upper end of the base station device is 28 GHz, by adding the thickness compensation structure 1220a having a thickness of d1 to the upper end of the cover frame 1200 according to the second embodiment having a predetermined thickness d0, the upper antenna cover device 1230a having an optimal thickness of 3.5 mm (d0+d1) for 28 GHz may be completed.
[0093] Further, when a frequency band of a beam emitted from the antenna device built in an upper end of the base station device is 39 GHz, by adding the thickness compensation structure 1220b having a thickness of d2 to an upper end of the cover frame 1200 according to the second embodiment having a predetermined thickness d0, the upper antenna cover device 1230b having an optimal thickness of 2.5 mm (d0+d2) for 39 GHz may be completed.
[0094] Accordingly, by adding a thickness compensation structure to one cover frame having a predetermined thickness, the cover device according to various embodiments of the disclosure may have an optimal thickness for each frequency band.
[0095] That is, when implementing a base station having the same external shape, by changing only the thickness compensation structure, the cover device of the disclosure can implement a cover device for each of various frequency bands.
[0096] Therefore, in the cover device according to various embodiments of the disclosure, by adding a thickness compensation structure having an optimal thickness to the inside of the cover frame without necessity to newly produce a separate mold having an optimal thickness for each frequency band, as in the prior art, the cover device can flexibly have an optimal thickness for various frequency bands without changing in an external shape of the cover device.
[0097] For example, in the cover devices 1230a and 1230b illustrated in
[0098]
[0099] As illustrated in
[0100] An area having a thickness d0 of the cover frame according to the second embodiment of the disclosure corresponds to an emission area of an antenna inside the base station device, and may vary according to a position and area of the antenna device built in the base station device.
[0101] For example, as illustrated in
[0102] Further, when the antenna device is built in the front surface of the base station device, a front area 1310b of a front antenna cover frame 1300b may have a thickness do, and when the antenna device is built in the side surface of the base station device, a side area 1310c of a side antenna cover frame 1300c may have a thickness d0.
[0103]
[0104] As illustrated in
[0105] As illustrated in
[0106] As illustrated in
[0107] As illustrated in
[0108]
[0109] As illustrated in
[0110] As illustrated in
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[0113] In graphs illustrated in
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[0115] Because it can be seen that an antenna gain corresponding to a vertical side is uniform even at various beam angles corresponding to a horizontal side in the graph of
[0116] In the specific embodiments of the disclosure described above, components included in the disclosure are expressed in the singular or plural according to the specific embodiments presented. However, the singular or plural expression is appropriately selected for a situation presented for convenience of description, and the disclosure is not limited to the singular or plural component, and even if a component is represented in the plural, it may be configured with the singular, or even if a component is represented in the singular, it may be configured with the plural.
[0117] In the detailed description of the disclosure, although specific embodiments have been described, various modifications are possible without departing from the scope of the disclosure. Therefore, the scope of the disclosure should not be limited to the described embodiments and should be defined by the claims described below as well as by those equivalent to the claims.
[0118] Various embodiments of the disclosure and terms used therein are not intended to limit the technology described in the disclosure to a specific embodiment, but it should be understood to include various modifications, equivalents, and/or substitutions of the embodiments. In connection with the description of the drawings, similar reference numerals may be used for similar components. The singular expression may include the plural expression unless the context clearly dictates otherwise. In the disclosure, expressions such as “A or B”, “at least one of A and/or B”, “A, B or C” or “at least one of A, B and/or C” may be included all possible combinations of the items listed together. Expressions such as “first” or “second” may modify the corresponding components regardless of order or importance, and are only used for distinguishing one component from another component and do not limit the components. When any (e.g., first) component is referred to as being “connected (functionally or communicatively)” or “accessed” to another (e.g., second) component, the component may be directly connected to the component or may be connected through another component (e.g., third component).
[0119] As reference numerals in relation to the drawings. 300 may indicate a cover frame. 320a and 320b may indicate a thickness compensation structure, and 330a and 330b may indicate a cover device.