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CN105552536B - A kind of monopole double frequency-band WLAN/WiMAX antennas - Google Patents

A kind of monopole double frequency-band WLAN/WiMAX antennas Download PDF

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Publication number
CN105552536B
CN105552536B CN201610098965.8A CN201610098965A CN105552536B CN 105552536 B CN105552536 B CN 105552536B CN 201610098965 A CN201610098965 A CN 201610098965A CN 105552536 B CN105552536 B CN 105552536B
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China
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radiant section
double frequency
band
wlan
wimax
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CN105552536A (en
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何业军
陈明海
陈满
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Shenzhen University
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Shenzhen University
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/36Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/36Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith
    • H01Q1/38Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith formed by a conductive layer on an insulating support

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  • Details Of Aerials (AREA)
  • Waveguide Aerials (AREA)
  • Variable-Direction Aerials And Aerial Arrays (AREA)

Abstract

The present invention discloses a kind of monopole double frequency-band WLAN/WiMAX antennas, the microstrip structure including medium substrate, positioned at medium substrate upper surface, the metal floor positioned at medium substrate lower surface;The microstrip structure includes a microstrip feed line, the first radiant section being connected with the microstrip feed line, the second radiant section being connected with first radiant section.The monopole double frequency-band WLAN/WiMAX antennas of the present invention, it is compact-sized, small size is may be designed to, there is good radiation characteristic.The antenna is by different resonant elements, and resonance realizes miniaturization and the two-band of WLAN/WIMAX antennas, suitable for WLAN2.45GHz and WIMAX3.5GHz in different frequencies respectively.

Description

A kind of monopole double frequency-band WLAN/WiMAX antennas
Technical field
The present invention relates to small-sized microstrip antenna field more particularly to a kind of monopole double frequency-band WLAN/WiMAX antennas.
Background technology
At present, with the rapid development of Modern wireless communication technology, WLAN(Wireless Local Area Networks, WLAN)And worldwide interoperability for microwave(Worldwide Interoperability Microwave Access, WiMAX)It is widely used.WLAN transmits data in the air using wireless communication technique, allows the progress of user at any time The exchange of information.WiMAX is then a kind of emerging wireless access wide band technology, is capable of providing the high speed connection of Internet, Data transmission distance farthest up to 50km, disclosure satisfy that the demand of high velocity mobile users.Weight of the antenna as wireless communication system Component is wanted, performance quality will generate significant impact to communicativeness.The frequency of WLAN groundworks at present is in 2.4 GHz (2.4-2.484 GHz), 5.2 GHz(5.15-5.35 GHz)、5.8 GHz (5.725-5.825 GHz).And for WIMAX, at present various countries there is no unified frequency partition standard, frequency partition is concentrated mainly on 2.5 GHz at present(2.5-2.69 GHz)、3.5 GHz (3.4-3.7 GHz)、5.5 GHz (5.25-5.85 GHz)Etc. frequency ranges.With WLAN and WiMAX technologies Universal application is obtained in wireless communication field, the Miniaturized multiband microstrip antenna of WLAN/WiMAX is directed to and is led as antenna One of domain research hotspot.
With the fast development of integrated circuit, system equipment is miniaturization, modularization, intelligentized to multifunctional all Direction continues to develop.As the final element of wireless communication system, modern electronic product proposes antenna higher performance will It asks:Broadband, multiband, small-sized, easily fabricated etc., this requirement also promote antenna and develop to miniaturization, multiband direction.By In the extensive use of wireless communication so that frequency spectrum resource becomes more and more nervous, therefore small design, low cost, double frequency or The WLAN/WiMAX antennas of multifrequency are of great significance.And when designing multiband aerial, microstrip antenna is because simple in structure, system Make easy, at low cost, the advantages that easily being integrated with microwave circuit, be widely used.Microstrip antenna multifrequency is realized at present, it is small-sized The work of change mainly has following methods:(1)Using multiple-layer overlapped mount technology, two are formed using the mode that two patches are stacked A resonator corresponds to different resonant frequencies and carries out dual frequency radiation, but structure is more complicated;(2)It is opened on aerial radiation patch Slot, but original current path can be changed, influence the radiation characteristic of antenna;(3)Two narrow band resonances units are merged into one Dual-band antenna unit, but therefore can increase the size of antenna.
Therefore, the prior art has yet to be improved and developed.
The content of the invention
In view of above-mentioned deficiencies of the prior art, it is an object of the invention to provide a kind of monopole double frequency-band WLAN/WiMAX Antenna, it is intended to solve the problems such as existing antenna structure is complicated, size is larger, performance is affected.
Technical scheme is as follows:
A kind of monopole double frequency-band WLAN/WiMAX antennas, wherein, including medium substrate, positioned at medium substrate upper surface Microstrip structure, the metal floor positioned at medium substrate lower surface;The microstrip structure includes a microstrip feed line and the micro-strip First radiant section of feeder line connection, the second radiant section being connected with first radiant section.
The monopole double frequency-band WLAN/WiMAX antennas, wherein, first radiant section is rectangle ring structure.
The monopole double frequency-band WLAN/WiMAX antennas, wherein, second radiant section is L-type structure.
The monopole double frequency-band WLAN/WiMAX antennas, wherein, the microstrip feed line also with one bending first Radiate metal band connection.
The monopole double frequency-band WLAN/WiMAX antennas, wherein, the microstrip feed line and first radiation metal tape it Between be additionally provided be connected to microstrip feed line second radiation metal tape.
The monopole double frequency-band WLAN/WiMAX antennas, wherein, the second radiation metal tape is bending structure.
The monopole double frequency-band WLAN/WiMAX antennas, wherein, second radiant section is in the first radiant section.
The monopole double frequency-band WLAN/WiMAX antennas, wherein, the medium substrate is FR4 substrates.
Advantageous effect:The monopole double frequency-band WLAN/WiMAX antennas of the present invention, it is compact-sized, it may be designed to small ruler It is very little, there is good radiation characteristic.The antenna is by different resonant elements, and resonance realizes WLAN/ in different frequencies respectively The miniaturization of WIMAX antennas and two-band, suitable for WLAN2.45GHz and WIMAX3.5GHz.
Description of the drawings
Fig. 1 is a kind of structure diagram at the first visual angle of monopole double frequency-band WLAN/WiMAX antennas of the present invention.
Fig. 2 is a kind of structure diagram at the second visual angle of monopole double frequency-band WLAN/WiMAX antennas of the present invention.
Fig. 3 is a kind of return loss plot figure of monopole double frequency-band WLAN/WiMAX antennas of the present invention.
Fig. 4 is a kind of directional diagram of the monopole double frequency-band WLAN/WiMAX antennas of the present invention in the E faces of 2.45GHz and H faces.
Fig. 5 is a kind of monopole double frequency-band WLAN/WiMAX antennas of the present invention in the E faces of 3.5GHz and the direction in H faces Figure.
Specific embodiment
The present invention provides a kind of monopole double frequency-band WLAN/WiMAX antennas, for make the purpose of the present invention, technical solution and Effect is clearer, clear and definite, and the present invention is described in more detail below.It should be appreciated that specific embodiment described herein It is only used to explain the present invention, be not intended to limit the present invention.
It please refers to Fig.1 and schemes, Fig. 1 and Fig. 2 are preferably implemented for a kind of monopole double frequency-band WLAN/WiMAX antennas of the present invention The structure diagram of example different visual angles, as shown in the figure, it includes medium substrate 1, the micro-strip knot positioned at 1 upper surface of medium substrate Structure, the metal floor positioned at 1 lower surface of medium substrate(Grounded part);The microstrip structure includes a microstrip feed line 2 and institute The first radiant section 3 for stating the connection of microstrip feed line 2, the second radiant section 4 being connected with first radiant section 3.The monopole of the present invention Sub- double frequency-band WLAN/WiMAX antennas, it is compact-sized, small size is may be designed to, there is good radiation characteristic.The antenna passes through Different resonant elements, resonance is in different frequencies, i.e. WLAN 2.45GHz and WIMAX 3.5GHz respectively.It is humorous by changing The size of unit of shaking can change the resonant frequency of antenna.Miniaturization and the two-band of WLAN/WIMAX antennas are realized, is applicable in In WLAN2.45GHz and WIMAX3.5GHz.
Specifically as shown in Figure 1, first radiant section 3 is rectangle ring structure.It is realized by the rectangle ring structure 2.45GHZ radiation.
Second radiant section 4 is L-type structure.Second radiant section 4 of L-type structure can reduce antenna size, and increase humorous Shake path.It is connected between first radiant section 3 and the second radiant section by the 3rd radiation metal tape 5, the 3rd radiation metal tape 5 One end is connected to the middle part of L-type structure long side, and the other end is connected to the middle part of rectangle ring structure top margin.
First radiation metal tape 6 of the microstrip feed line 2 also with a bending is connected.The first radiation metal tape 6 It forms the structure of a reverse-hook shape, and each section is linear structure.
The microstrip feed line 2 and first is additionally provided with the second radiation gold for being connected to microstrip feed line 2 between radiating metal tape 6 Belong to band 7.The introducing that first radiation metal tape 6 and second radiates metal tape 7 makes 3.5GHz impedance matchings, adds bandwidth.Pass through The impedance matching of 3.5GHz can be realized by changing the size of the first radiation radiation metal tape 7 of metal tape 6 and second.It can specifically apply Frequency Simulation Software HFSS carries out simulation calculation and optimization design to antenna, to obtain optimum size and tuning relation.
The second radiation metal tape 7 is preferably also bending structure.The second radiant section 4 and bending by L-type structure Metal tape realizes the radiation of 3.5GHz.
Second radiant section 4 is preferably in the first radiant section 3, i.e., second radiant section 4 is in the first radiation In the rectangle ring structure of section 3, such a structure increases the resonant path of antenna, and then the size of antenna is reduced, increased simultaneously The effective bandwidth of antenna.
The medium substrate 1 is FR4 substrates(That is epoxy plate).The relative dielectric constant of FR4 is 4.4, and dielectric loss is 0.02。
In this way, double frequency-band WLAN/WIMAX antennas of the present invention are a kind of monopole antenna based on microband paste, The radiation of 2.45GHz is realized by the first radiant section 3 of a microstrip feed line 2 and rectangle ring structure, by being radiated with first Second radiant section 4 of the L-type structures of 3 connection of section and the first radiation metal tape 6 being connected with microstrip feed line 2 realize 3.5GHz Radiation, the present invention be suitable for WLAN2.45GHz and WiMAX3.5GHz, it is simple in structure, be easy to make, it is at low cost.
As an example, as depicted in figs. 1 and 2, the size of each parameter of antenna in embodiment is:
The length of medium substrate 1 and wide L=16cm, W=28mm, thickness 1.6mm respectively;The lower surface of medium substrate 1 The size of metal floor 8 is p1=1mm, L=16mm;Length K=14mm of microstrip feed line 2, width w1=1.5mm;First radiant section 3 Each parameter be respectively length L1=14mm, width L2=14mm, the wide w2=1mm of underclearance, side relief width w3=1mm;Second The size of radiant section 4 is width n2=5mm, long side relief width w5=1mm respectively;First radiant section 3 is connected with the second radiant section 4 The 3rd radiation metal tape 5 size be length n1=1mm, width w4=0.5mm;The second radiation being connected with microstrip feed line 2 The size of metal tape 7 is length m4=4mm, width w7=0.5mm;The ruler for the first radiation metal tape 6 being connected with microstrip feed line 2 It is very little for long edge lengths m1=5mm, width m2=5mm, bond length m3=4mm, middle part relief width w6=1mm.
In the present invention, Dual-band monopole antenna WLAN/WiMAX property indices are tested using HFSS softwares, institute The return loss plot obtained is as shown in Figure 3.As seen from the figure, the working frequency range of below -10dB for 2.35GHz~2.49GHz and 3.36GHz~3.66GHz so bandwidth meets job requirement, has reached good impedance matching effect.Fig. 4 is double for monopole E-plane and H-plane pattern of the frequency band WLAN/WiMAX antennas in 2.45GHz, as seen from the figure, in frequency 2.45GHz, gain For 1.66dBi, Fig. 5 is E-plane and H-plane pattern of the monopole double frequency-band WLAN/WiMAX antennas in 3.5GHz, can by figure See, when frequency is 3.5GHz, gain 1.55dBi, so the present invention has good omni-directional.The antenna of the present invention returns Ripple loss meets bandwidth requirement, the directional diagram E noodles figure of eight directional diagrams of antenna, and H faces are omni-directional pattern, and gain meets day The requirement of line.Feeding classification is feed microstrip line.
Compared with the prior art, technical characterstic of the invention and effect are as follows:
The present invention by the first radiant section of a rectangle ring structure introduce a second L-shaped radiant section and The metal tape of bending is set to realize the radiation of 2.45GHz and 3.5GHz on microstrip feed line, such a structure increases the humorous of antenna Shake path, and then reduces the size of antenna, while adds the effective bandwidth of antenna.
Antenna has compact structure in the present invention(28mm*16mm*1.6mm), can easily be integrated into WLAN and In WiMAX equipment.
The metal tape of bending adds the bandwidth of antenna, realizes the design of multifrequency, has good matching properties, antenna Directional diagram in all working frequency range relatively stablize.
It should be appreciated that the application of the present invention is not limited to the above, it for those of ordinary skills, can To be improved or converted according to the above description, all these modifications and variations should all belong to the guarantor of appended claims of the present invention Protect scope.

Claims (6)

1. a kind of monopole double frequency-band WLAN/WiMAX antennas, which is characterized in that including medium substrate, positioned at medium substrate upper table The microstrip structure in face, the metal floor positioned at medium substrate lower surface;The microstrip structure include a microstrip feed line, with it is described First radiant section of microstrip feed line connection, the second radiant section being connected with first radiant section;
First radiation metal band connection of the microstrip feed line also with a bending, the first radiation metal tape is an overhead kick type Structure;
The the second radiation metal tape for being connected to microstrip feed line is additionally provided between the microstrip feed line and the first radiation metal tape.
2. monopole double frequency-band WLAN/WiMAX antennas according to claim 1, which is characterized in that first radiant section For rectangle ring structure.
3. monopole double frequency-band WLAN/WiMAX antennas according to claim 1, which is characterized in that second radiant section For L-type structure.
4. monopole double frequency-band WLAN/WiMAX antennas according to claim 1, which is characterized in that the second radiation gold It is bending structure to belong to band.
5. monopole double frequency-band WLAN/WiMAX antennas according to claim 2, which is characterized in that second radiant section In the first radiant section.
6. monopole double frequency-band WLAN/WiMAX antennas according to claim 1, which is characterized in that the medium substrate is FR4 substrates.
CN201610098965.8A 2016-02-23 2016-02-23 A kind of monopole double frequency-band WLAN/WiMAX antennas Active CN105552536B (en)

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Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107681257B (en) * 2017-11-10 2021-04-06 哈尔滨工程大学 Miniaturized three-resonance antenna
CN107968256B (en) * 2017-11-20 2020-10-27 哈尔滨工程大学 Small-size multifunctional antenna
CN108321518A (en) * 2018-01-22 2018-07-24 哈尔滨工程大学 A kind of multiband antenna based on coupling load
TWI713253B (en) * 2019-11-22 2020-12-11 啓碁科技股份有限公司 Antenna structure

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202772260U (en) * 2012-09-27 2013-03-06 天津职业技术师范大学 Novel tri-band printed antenna
CN104009285A (en) * 2014-05-29 2014-08-27 华南理工大学 Miniaturized multi-band WLAN/WiMAX antenna
CN104201466A (en) * 2014-09-01 2014-12-10 西安电子科技大学 Frequency reconfigurable filtering antenna with end-on-fire characteristics
CN104868232A (en) * 2015-05-25 2015-08-26 华南理工大学 Printing type multiband WLAN/WiMAX antenna with compact structure
CN204885431U (en) * 2015-09-14 2015-12-16 天津职业技术师范大学 A rectangle cyclic annular " T " shape dual -frenquency microstrip antenna for WLAN

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202772260U (en) * 2012-09-27 2013-03-06 天津职业技术师范大学 Novel tri-band printed antenna
CN104009285A (en) * 2014-05-29 2014-08-27 华南理工大学 Miniaturized multi-band WLAN/WiMAX antenna
CN104201466A (en) * 2014-09-01 2014-12-10 西安电子科技大学 Frequency reconfigurable filtering antenna with end-on-fire characteristics
CN104868232A (en) * 2015-05-25 2015-08-26 华南理工大学 Printing type multiband WLAN/WiMAX antenna with compact structure
CN204885431U (en) * 2015-09-14 2015-12-16 天津职业技术师范大学 A rectangle cyclic annular " T " shape dual -frenquency microstrip antenna for WLAN

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Inventor after: He Yejun

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Inventor before: Yin Jiajia

Inventor before: He Chunlong

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