CN103367911A - Metamaterial base station antenna housing and antenna system - Google Patents

Metamaterial base station antenna housing and antenna system Download PDF

Info

Publication number
CN103367911A
CN103367911A CN2012100941504A CN201210094150A CN103367911A CN 103367911 A CN103367911 A CN 103367911A CN 2012100941504 A CN2012100941504 A CN 2012100941504A CN 201210094150 A CN201210094150 A CN 201210094150A CN 103367911 A CN103367911 A CN 103367911A
Authority
CN
China
Prior art keywords
antenna
base station
super
super material
station cover
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
CN2012100941504A
Other languages
Chinese (zh)
Inventor
刘若鹏
赵治亚
方小伟
王凡
金晶
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.)
Kuang Chi Innovative Technology Ltd
Original Assignee
Kuang Chi Innovative Technology Ltd
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 Kuang Chi Innovative Technology Ltd filed Critical Kuang Chi Innovative Technology Ltd
Priority to CN2012100941504A priority Critical patent/CN103367911A/en
Publication of CN103367911A publication Critical patent/CN103367911A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Details Of Aerials (AREA)

Abstract

The invention relates to a metamaterial base station antenna housing and an antenna system. The metamaterial base station antenna housing is covered on an antenna and comprises at least one metamaterial sheet layer, wherein each of the metamaterial sheet layer comprises a substrate and a plurality of artificial microstructures arranged on the substrate in an array; the substrate can be divided into a plurality of metamaterial units, and each of the metamaterial units is configured with one artificial microstructure; each of the artificial microstructure comprises a cross-shaped structure arranged at the center of the metamaterial unit and four circular ring structures arranged in four quadrants divided by the cross-shaped structure respectively. According to the invention, the artificial microstructures with special shapes are adhered to the substrate, the relative dielectric constant, the refractive index and the impedance of the material are changed through adjusting the shape and the size of the artificial microstructures, thereby reinforcing transmission of electromagnetic waves, and improving the directivity and the gain of the antenna.

Description

Super material antenna for base station cover and antenna system
Technical field
The present invention relates to radome, more particularly, relate to super material antenna for base station cover and antenna system.
Background technology
In recent years, development along with wireless communication technique, WLAN (wireless local area network) has been goed deep into each place, in order in mode low-cost, wireless penetration each wireless network to be together in series, the cloth that needs to strengthen the backbone network base station is built, usually consist of with long distance and point-to-point mode, therefore need high directivity, high-gain aerial.
Generally speaking, antenna system all can be provided with radome, and the purpose of radome is the impact that the protection antenna system is avoided wind and rain, ice and snow, sand and dust and solar radiation etc., makes the antenna system service behaviour more stable, reliable.Alleviate simultaneously wearing and tearing, the corrosion and aging of antenna system, increase the service life.But radome is the barrier of antenna front, can produce the aerial radiation ripple to absorb and reflection, changes the free space Energy distribution of antenna, especially the large material of dielectric constant and loss, large to the electromagnetic reflection coefficient of antenna, affect the performance of antenna, reduce antenna gain.
Super material is commonly called as super material, is a kind of novel artificial synthetic material, is the substrate of being made by nonmetallic materials and is attached on the substrate surface or a plurality of artificial micro-structural that is embedded in substrate inside consists of.Substrate can be divided into a plurality of base board units that rectangular array is arranged virtually, be attached with artificial micro-structural on each base board unit, thereby form a super material cell, whole super material is comprised of a lot of so super material cell, just as crystal is to be made of according to certain arranging countless lattices.Artificial micro-structural on each super material cell can be identical or incomplete same.Artificial micro-structural has certain geometric plane or a stereochemical structure by what wire formed, such as forming annular, I-shaped wire etc.
The stack meeting of artificial micro-structural and substrate produces an effective dielectric constant and magnetic permeability in the space, these two physical parameters are corresponding respectively electric field response and the magnetic responsiveness of material monolithic.The electromagnetic response of super material depends on topological characteristic and the super material cell size of its artificial micro-structural metal wire to a great extent.By concrete structure and the shape different to artificial microstructure design, can change the response characteristic of whole super material.
At present the material of preparation radome adopts dielectric constant and loss angle tangent is low, mechanical strength is high material more, and such as fiberglass, epoxy resin, high molecular polymer etc., the dielectric constant of material has unadjustable property.Mostly be uniform single walled structure, sandwich and spatial skeleton structure etc. on the structure; the design of cone wall thickness need take into account operation wavelength, radome size and dimension, environmental condition, material therefor in factors such as electric and structural performances, is protecting antenna to avoid scarcely possessing under the condition of external environment influence the function of enhance antenna directionality and gain.
Summary of the invention
The technical problem to be solved in the present invention is, do not possess the defective of enhance antenna directionality and gain for the above-mentioned radome of prior art, and a kind of super material antenna for base station cover and antenna system are provided.
The technical solution adopted for the present invention to solve the technical problems is: construct a kind of super material antenna for base station cover, described super material antenna for base station cover covers on the antenna, comprise at least one super sheet of material, each super sheet of material comprises substrate and the array arrangement a plurality of artificial micro-structural on described substrate;
Described substrate can be divided into a plurality of super material cell, wherein is placed with a described artificial micro-structural on each super material cell; Each artificial micro-structural comprises the decussate texture that is arranged at super material cell center and is arranged at respectively four interior circular ring structures of four quadrants that decussate texture is divided.
In super material antenna for base station cover of the present invention, described super material antenna for base station cover comprises a super sheet of material, and described super sheet of material also comprises a substrate, is used for covering artificial micro-structural, and artificial micro-structural is folded between two substrates.
In super material antenna for base station cover of the present invention, described circular ring structure measure-alike, gapped between per two adjacent circular ring structures.
In super material antenna for base station cover of the present invention, described circular ring structure is by the wire with default live width.
In super material antenna for base station cover of the present invention, described decussate texture vertically divides equally by two and measure-alike wire consists of.
In super material antenna for base station cover of the present invention, the length of each super material cell and the wide 6mm that is, the thickness of described substrate is 2mm, the thickness of described artificial micro-structural is 0.018mm.
In super material antenna for base station cover of the present invention, the interior diameter of described circular ring structure is 0.8~1.2mm.
In super material antenna for base station cover of the present invention, the wire live width of described circular ring structure is 0.1mm.
In super material antenna for base station cover of the present invention, the length wiry of described decussate texture is 0.3~2.1mm, and the wire live width is 0.1mm.
The present invention also provides a kind of antenna system, comprises antenna body, and aforesaid super material antenna for base station cover, and described super material antenna for base station cover covers on the antenna body.
Implement technical scheme of the present invention, have following beneficial effect: by adhere to the artificial micro-structural of given shape at substrate, obtain the electromagnetic response that needs.Can be by regulating shape, the size of artificial micro-structural, change relative dielectric constant, refractive index and the impedance of material, realization is to electromagnetic modulation, when having reduced the design of traditional antenna cover to the restriction of material thickness and dielectric constant, effectively control the electromagnetic wave propagation characteristic, strengthen electromagnetic transmission, thereby improve directivity and the gain of antenna.
Description of drawings
The invention will be further described below in conjunction with drawings and Examples, in the accompanying drawing:
Fig. 1 is the structural representation according to a super sheet of material of the super material antenna for base station cover of one embodiment of the invention;
Fig. 2 is the structural representation by a plurality of stacking super material antenna for base station covers that form of super sheet of material shown in Figure 1;
Fig. 3 is the schematic perspective view according to the structure of the super sheet of material of one embodiment of the invention;
Fig. 4 is the schematic perspective view according to the structure of the super sheet of material of another embodiment of the present invention;
Fig. 5 is the artificial micro-structural of adhering on the super sheet of material schematic diagram of arranging;
Fig. 6 is the schematic diagram of artificial micro-structural;
Fig. 7 is the S parameters simulation result schematic diagram of super material antenna for base station cover;
Fig. 8 is the enlarged drawing of the S21 parameter among Fig. 7;
Fig. 9 is effective dielectric constant, magnetic permeability and the impedance of super material antenna for base station cover.
Embodiment
Super material is a kind of artificial composite structure material with the not available extraordinary physical property of natural material, by the ordered arrangement to micro-structural, can change in the space relative dielectric constant and magnetic permeability at every.Super material can be realized refractive index, impedance and the wave penetrate capability that common material can't possess within the specific limits, thereby can effectively control the electromagnetic wave propagation characteristic.Super material radome based on artificial micro-structural can be by regulating shape, the size of artificial micro-structural, change relative dielectric constant, refractive index and the impedance of material, thereby realize the impedance matching with air, to increase to greatest extent the transmission of incident electromagnetic wave, improve the directivity of electromagenetic wave radiation, improve the gain of antenna.
The invention provides a kind of super material antenna for base station cover, super material antenna for base station cover covers on the antenna, and super material antenna for base station cover comprises at least one super sheet of material 1, as depicted in figs. 1 and 2.Each super sheet of material 1 comprises substrate 10 and is attached to the artificial micro-structural 20 of the array arrangement on the substrate 10.When super sheet of material 1 has when a plurality of, each super sheet of material 1 is along the direction stack perpendicular to lamella, and is assembled into one by mechanical connection, welding or bonding mode, as shown in Figure 2.For example adopt 3 laminar substrates, two-layer artificial micro-structural is intervally arranged between 3 laminar substrates; In like manner, adopt 5 laminar substrates, 4 layers of artificial micro-structural are intervally arranged between 5 laminar substrates.Here describe as an example of a substrate example, but when actual design, also can adopt two substrates, and artificial micro structure array is arranged on one of them substrate, another substrate covers artificial micro-structural, and artificial micro-structural is folded between two substrates, can reach purpose of the present invention equally, as shown in Figure 4, provided the perspective view of the super sheet of material of another embodiment of the present invention.The present invention does not limit the concrete quantity of super sheet of material, can regulate super number of layers according to different gain requirements, thus the control antenna gain.
Usually, in the situation that can satisfy performance, a super sheet of material just can be used as super material antenna for base station cover and uses.The plane, artificial micro-structural place of array arrangement is parallel with electromagnetic Electric and magnetic fields direction, and is vertical with the incident electromagnetic wave direction of propagation.Substrate 10 in the super sheet of material 1 can be divided into a plurality of super material cell.Shown in Fig. 3-5, be placed with an artificial micro-structural 20 on each super material cell.In an embodiment of the present invention, the length of each super material cell and wide be b=6mm.The division number of the super material cell shown in the figure is only for signal, not as limitation of the present invention.
Artificial micro-structural 20 comprises the decussate texture 21 that is arranged at super material cell center and is arranged at respectively four circular ring structures 22 in four quadrants that decussate texture 21 divides, as shown in Figure 6.In an embodiment of the present invention, the center of circle of circular ring structure 22 is positioned at the center of each quadrant, and circular ring structure 22 measure-alike is gapped between per two adjacent circular ring structures 22.Circular ring structure 22 is made of the wire with default live width w, presets live width w such as but not limited to 0.05~0.15mm, preferred 0.1mm.The interior diameter of circular ring structure 22 is 0.8~1.2mm.Decussate texture 21 is vertically divided equally and measure-alike wire by two.The length wiry of decussate texture 21 is 0.3~2.1mm, a=0.1~1mm, and wire live width w is 0.1mm.
The thickness of substrate 10 is 2mm, and the thickness of artificial micro-structural 20 is 0.018mm.Numerical value herein only is example, in actual applications, can adjust according to actual demand, and the present invention is not restricted this.
In an embodiment of the present invention, substrate 10 is made by PP (polypropylene) material.Artificial micro-structural 20 is attached on the substrate 10 by etched mode, certain artificial micro-structural 20 also can adopt plating, bores quarter, photoetching, electronics is carved or ion quarter etc. mode be attached on the substrate 10.Substrate 30 covers artificial micro-structural, and artificial micro-structural is folded between two substrates 10,30.Substrate 10 and substrate 30 also can adopt other materials to make, make such as pottery, FR4, F4B (polytetrafluoroethylene), HDPE (high density polyethylene (HDPE), High Density Polyethylene) or ABS (Acrylonitrile Butadiene Styrene), ferroelectric material, ferrite material or ferromagnetic material.Interconnect by the filling liquid raw substrate or by assembling between substrate 10 and the substrate 20, artificial micro-structural 20 is located between substrate 10 and 30, as shown in Figure 4.Artificial micro-structural 20 adopts copper cash to make, and can certainly adopt the electric conducting materials such as silver-colored line, ITO, graphite or carbon nano-tube to make.The radome of illustrating in the accompanying drawing be shaped as tabular, when actual design, also can come according to the actual requirements the shape of designing antenna cover, such as being designed to spherical shape or with the shape (conformal radome) of antenna pattern coupling etc., do not get rid of the shape of using a plurality of plate-like structures to be spliced into needs, the present invention is not restricted this yet.
The present invention also provides a kind of antenna system, comprises antenna body, and super material antenna for base station cover as indicated above, and super material antenna for base station cover covers on the antenna body.Antenna body comprises radiation source, feed element etc., and concrete formation can be consulted the correlation technique data, and the present invention is not restricted this.Antenna body can be such as but not limited to plate aerial.
Fig. 7-8 shows the S parameter schematic diagram of super material antenna for base station cover, and among this embodiment, super material antenna for base station cover comprises two substrates, a plurality of artificial micro-structurals of sandwiched, i.e. structure shown in Figure 4 between two substrates.Substrate 10 and substrate 30 adopt PP (polypropylene) material.Default live width w=0.1mm, b=6mm, a=1mm, R=0.8mm.By Fig. 7-8 as can be known, radome is very little in 0.1-3.0GHz frequency range internal reflection loss.Reflection coefficient S11 is less than-15dB, and transmission coefficient S21 is greater than-0.15dB, and radome has good wave transparent effect.
Fig. 9 shows effective dielectric constant ε, magnetic permeability μ and the impedance η of super material antenna for base station cover.Can find out that in the 0.1-3.0GHz frequency range, the equiva lent impedance η of super material antenna for base station cover is near 1, perfection realizes the impedance matching with air.
The present invention obtains the electromagnetic response that needs by adhere to the artificial micro-structural of given shape at substrate.Can be by regulating shape, the size of artificial micro-structural, change relative dielectric constant, refractive index and the impedance of material, realization is to electromagnetic modulation, when having reduced the design of traditional antenna cover to the restriction of material thickness and dielectric constant, effectively control the electromagnetic wave propagation characteristic, strengthen electromagnetic transmission, thereby improve directivity and the gain of antenna.
The above is described embodiments of the invention by reference to the accompanying drawings; but the present invention is not limited to above-mentioned embodiment; above-mentioned embodiment only is schematic; rather than restrictive; those of ordinary skill in the art is under enlightenment of the present invention; not breaking away from the scope situation that aim of the present invention and claim protect, also can make a lot of forms, these all belong within the protection of the present invention.

Claims (10)

1. a super material antenna for base station cover is characterized in that, described super material antenna for base station cover covers on the antenna, comprises at least one super sheet of material, and each super sheet of material comprises substrate and the array arrangement a plurality of artificial micro-structural on described substrate;
Described substrate can be divided into a plurality of super material cell, wherein is placed with a described artificial micro-structural on each super material cell; Each artificial micro-structural comprises the decussate texture that is arranged at super material cell center and is arranged at respectively four interior circular ring structures of four quadrants that decussate texture is divided.
2. super material antenna for base station cover according to claim 1, it is characterized in that described super material antenna for base station cover comprises a super sheet of material, described super sheet of material also comprises a substrate, be used for covering artificial micro-structural, artificial micro-structural is folded between two substrates.
3. super material antenna for base station cover according to claim 1 is characterized in that, described circular ring structure measure-alike is gapped between per two adjacent circular ring structures.
4. super material antenna for base station cover according to claim 3 is characterized in that described circular ring structure is made of the wire with default live width.
5. super material antenna for base station cover according to claim 5 is characterized in that described decussate texture vertically divides equally by two and measure-alike wire consists of.
6. super material antenna for base station cover according to claim 1 is characterized in that, the length of each super material cell and the wide 6mm that is, and the thickness of described substrate is 2mm, the thickness of described artificial micro-structural is 0.018mm.
7. super material antenna for base station cover according to claim 4 is characterized in that the interior diameter of described circular ring structure is 0.8~1.2mm.
8. super material antenna for base station cover according to claim 7 is characterized in that the wire live width of described circular ring structure is 0.1mm.
9. super material antenna for base station cover according to claim 5 is characterized in that the length wiry of described decussate texture is 0.3~2.1mm, and the wire live width is 0.1mm.
10. an antenna system is characterized in that, comprises antenna body, and such as each described super material antenna for base station cover of claim 1~9, described super material antenna for base station cover covers on the antenna body.
CN2012100941504A 2012-04-01 2012-04-01 Metamaterial base station antenna housing and antenna system Pending CN103367911A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2012100941504A CN103367911A (en) 2012-04-01 2012-04-01 Metamaterial base station antenna housing and antenna system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2012100941504A CN103367911A (en) 2012-04-01 2012-04-01 Metamaterial base station antenna housing and antenna system

Publications (1)

Publication Number Publication Date
CN103367911A true CN103367911A (en) 2013-10-23

Family

ID=49368749

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2012100941504A Pending CN103367911A (en) 2012-04-01 2012-04-01 Metamaterial base station antenna housing and antenna system

Country Status (1)

Country Link
CN (1) CN103367911A (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103984047A (en) * 2014-05-30 2014-08-13 电子科技大学 Infrared metamaterial wave absorbing body
CN104319486A (en) * 2014-10-14 2015-01-28 西安电子科技大学 Reflecting plate based on ultra-wide stopband frequency selective surface
CN104934704A (en) * 2014-03-18 2015-09-23 深圳光启创新技术有限公司 Ceramic radome
CN104934719A (en) * 2014-03-18 2015-09-23 深圳光启创新技术有限公司 Bandstop wave-transparent metamaterial, antenna cover and antenna system
CN105048100A (en) * 2015-06-25 2015-11-11 江苏轩途电子科技有限公司 2-bit terahertz anisotropic electromagnetic coding meta-material and application thereof
CN113394565A (en) * 2021-05-28 2021-09-14 哈尔滨工业大学 All-metal metamaterial lens with near-field convergence function and unit arrangement design method thereof
CN115236776A (en) * 2022-06-23 2022-10-25 中国科学院物理研究所 Ultra-wideband wave absorber with sub-wavelength structure and preparation method and application thereof

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101335379A (en) * 2007-06-25 2008-12-31 财团法人工业技术研究院 Antenna apparatus and antenna radome and design method thereof
CN102013537A (en) * 2010-12-13 2011-04-13 中兴通讯股份有限公司 Substrate integrated waveguide split ring resonator-based microwave band pass filter
CN102074777A (en) * 2011-01-05 2011-05-25 华东师范大学 Micro-strip rectangular double annular circular-seam resonator-based frequency selectivity surface structure
JP4795344B2 (en) * 2004-07-23 2011-10-19 ザ リージェンツ オブ ザ ユニバーシティ オブ カリフォルニア Metamaterial

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4795344B2 (en) * 2004-07-23 2011-10-19 ザ リージェンツ オブ ザ ユニバーシティ オブ カリフォルニア Metamaterial
CN101335379A (en) * 2007-06-25 2008-12-31 财团法人工业技术研究院 Antenna apparatus and antenna radome and design method thereof
CN102013537A (en) * 2010-12-13 2011-04-13 中兴通讯股份有限公司 Substrate integrated waveguide split ring resonator-based microwave band pass filter
CN102074777A (en) * 2011-01-05 2011-05-25 华东师范大学 Micro-strip rectangular double annular circular-seam resonator-based frequency selectivity surface structure

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104934704A (en) * 2014-03-18 2015-09-23 深圳光启创新技术有限公司 Ceramic radome
CN104934719A (en) * 2014-03-18 2015-09-23 深圳光启创新技术有限公司 Bandstop wave-transparent metamaterial, antenna cover and antenna system
CN103984047A (en) * 2014-05-30 2014-08-13 电子科技大学 Infrared metamaterial wave absorbing body
CN103984047B (en) * 2014-05-30 2016-01-20 电子科技大学 A kind of infrared excess material wave-absorber
CN104319486A (en) * 2014-10-14 2015-01-28 西安电子科技大学 Reflecting plate based on ultra-wide stopband frequency selective surface
CN104319486B (en) * 2014-10-14 2017-04-19 西安电子科技大学 Reflecting plate based on ultra-wide stopband frequency selective surface
CN105048100A (en) * 2015-06-25 2015-11-11 江苏轩途电子科技有限公司 2-bit terahertz anisotropic electromagnetic coding meta-material and application thereof
CN105048100B (en) * 2015-06-25 2018-12-25 江苏赛博空间科学技术有限公司 2- bit Terahertz anisotropy electromagnetism encodes Meta Materials and application
CN113394565A (en) * 2021-05-28 2021-09-14 哈尔滨工业大学 All-metal metamaterial lens with near-field convergence function and unit arrangement design method thereof
CN115236776A (en) * 2022-06-23 2022-10-25 中国科学院物理研究所 Ultra-wideband wave absorber with sub-wavelength structure and preparation method and application thereof

Similar Documents

Publication Publication Date Title
CN102760966B (en) Wide-band high-wave transmission metamaterial, antenna housing thereof and antenna system
CN103367911A (en) Metamaterial base station antenna housing and antenna system
CN102694255B (en) Meta-material microwave antenna housing and antenna system
CN102769198B (en) Artificial electromagnetic material, radome and antenna system
CN102760965B (en) Large-angle wave-transmitting metamaterial, antenna housing thereof and antenna system
CN102683842B (en) Super material microwave antenna house and antenna system
CN103296409A (en) Broadband metamaterial antenna housing and antenna system
CN102760962B (en) Wideband wave-transmitting metamaterial, and antenna housing and antenna system formed by same
CN103367909B (en) microwave antenna cover and microwave antenna system
CN102723598B (en) Metamaterial microwave antenna cover and antenna system
CN102760964A (en) Wave-transmitting meta-material and antenna cover and antenna system with material
CN103296419A (en) Broadband metamaterial antenna housing and antenna system
CN103579773A (en) Metamaterial, radome with same and antenna system
CN102842758A (en) Radome material and radome and antenna system adopting same
CN102760963B (en) Broadband wave-transmitting meta-material and antenna cover and antenna system with material
CN103296408A (en) Metamaterial radome with smoothing function and antenna
CN103296410A (en) High-gain metamaterial antenna housing and antenna system
CN202487770U (en) Wide-band metamaterial antenna housing and antenna system
CN102709694A (en) Microwave radome and antenna system
CN103296401A (en) Low-loss metamaterial antenna housing
CN103296402A (en) Low-loss metamaterial antenna housing
CN103682614A (en) Broadband wave-transmitting material, and antenna housing and antenna system thereof
CN102694254A (en) Metamaterial base station antenna radome and antenna system
CN202662803U (en) Broadband high-wave transmission metamaterial antenna housing and antenna system
CN103296406B (en) Metamaterial antenna housing

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication
RJ01 Rejection of invention patent application after publication

Application publication date: 20131023