CN201018007Y - Dual-polarization T type matching folded dipole base station antenna - Google Patents

Dual-polarization T type matching folded dipole base station antenna Download PDF

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Publication number
CN201018007Y
CN201018007Y CNU2006201541621U CN200620154162U CN201018007Y CN 201018007 Y CN201018007 Y CN 201018007Y CN U2006201541621 U CNU2006201541621 U CN U2006201541621U CN 200620154162 U CN200620154162 U CN 200620154162U CN 201018007 Y CN201018007 Y CN 201018007Y
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China
Prior art keywords
radiation conductor
folded dipole
base station
station antenna
microstrip feed
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Expired - Lifetime
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CNU2006201541621U
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Chinese (zh)
Inventor
褚庆昕
王澜
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South China University of Technology SCUT
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South China University of Technology SCUT
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Abstract

The utility model provides a dual polarization T shaped matching folded dipole base station antenna, which comprises a folded dipole, a grounding plate and a microstrip feeder line, wherein the folded dipole is in a T shape, two folded dipoles are fixed on the same grounding plate, which form the perpendicularity of positive 45 degrees and negative 45 degrees and do not contact with each other, the two folded dipoles are respectively connected with the asymmetrical microstrip feeder line by an electromagnetic coupling way, two microstrip feeder lines do not contact with each other, and the lower part is parallel to the grounding plate and is separated through a dielectric medium; the two microstrip feeder lines are respectively connected with the RF equipment. The utility model has the advantages that the manufacture is simple, the cost is inexpensive, the products are elegant and generous, and the operation is convenient; matching characteristic which is met within a certain frequency range can be provided; the adjustment flexibility is high, the utility model is easy to match with the feeding, obtains a wide impedance band width, adapts the requirement of the communications system dilatancy, and has a 24 percent of band width under the condition that the standing wave ratio is less than 1.5.

Description

A kind of double polarization T-type matched folded dipole base station antenna
Technical field
The utility model relates to the antenna for base station technology, specifically is meant a kind of double polarization T-type matched folded dipole base station antenna.
Background technology
Current, in mobile communication system, owing to increasing rapidly of number of users, the communication channel deficiency has become the serious problems of densely inhabited district.Mobile subscriber's sharp increase makes communication system bring in constant renewal in and dilatation, for reducing the interference between antenna and reducing cost, requires antenna to work in broad frequency range, satisfies the communicating requirement of a plurality of systems simultaneously, realizes shared by multiple systems and transmit-receive sharing.This just has higher requirement to the broadband character of the antenna for base station of mobile communication important component part.
In the prior art, the working band width of Chang Gui half-wave radiation unit is approximately 15%.Because frequency range is that 1920~2170MHz third generation radio communication service will be soon open-minded, this just wishes that antenna for base station has wideer bandwidth, not only the user of 1850~1990MHz frequency range of 1710~1880MHz frequency range of suitable current digital communication system DCS, Personal Communications Services PCS uses, and to be fit to of the user use of TD-SCDMA frequency range at 1920~2170MHz, its relative bandwidth is 24%.So develop wide band base station array antenna is to adapt to the urgent need that wideband communications service is carried out.
A main path of broadening antenna impedance bandwidth is to widen oscillator arms, promptly strengthens vibrator diameter, thereby reduces characteristic impedance.Present most broad-band antenna oscillator all is this mode that adopts.Though it is helpful to the raising of impedance bandwidth to widen oscillator arms, also can increase the size and the material usage of antenna element simultaneously.
The common double polarization folded dipole of using at present also is based on the principle of widening oscillator arms, and what it participated in radiation is two in-phase current compositions on the lead, is equivalent to the equivalent diameter chap of oscillator, and characteristic impedance descends, and helps the improvement of impedance bandwidth characteristic; Secondly, folded dipole input impedance equals the parallel connection of symmetrical dipole impedance and short-circuit line impedance.When the frequency departure resonance frequency, both compensate mutually, thereby it is milder that input impedance is changed, broadening impedance bandwidth.
But common double polarization folded dipole is difficult to regulate the input impedance that changes oscillator, to such an extent as to the coupling difficulty of feeder line again under the situation that length is determined.
Summary of the invention
The purpose of this utility model is to overcome the shortcoming and defect of above-mentioned prior art, is provided for a kind of double polarization T-type matched folded dipole base station antenna of mobile communication, and it is convenient to change the impedance of oscillator, and easy and feed reaches coupling, obtains wide impedance bandwidth.
The purpose of this utility model is achieved through the following technical solutions: this double polarization T-type matched folded dipole base station antenna, comprise folded dipole, ground plate, microstrip feed line, described folded dipole is the T type, two folded dipoles are fixed on the same ground plate, be positive and negative 45 ° of quadratures and do not contact, two folded dipoles link to each other with asymmetric microstrip feed line respectively in the electromagnetic coupled mode, and two microstrip feed lines do not contact, and its underpart is parallel with ground plate and separate with dielectric; Two microstrip feed lines are connected with RF equipment respectively, and described RF equipment comprises transmitter or receiver.
Described folded dipole comprises the last radiation conductor that is rectangle respectively, following radiation conductor, supportive conductors, last radiation conductor is longer than following radiation conductor, last radiation conductor length is 1/2nd (when band limits is 1.71~2.17GHz, being approximately 70mm) of centre frequency corresponding wavelength; Following radiation conductor, supportive conductors are made as left and right two parts of symmetry respectively, the left and right outer end of radiation conductor down is connected with last radiation conductor respectively, two terminal open circuits of last radiation conductor, the left and right inner corresponding and upper end of left and right supportive conductors of radiation conductor down is connected; Between the upper and lower radiation conductor, between the left and right down radiation conductor and be respectively arranged with spacing between the left and right supportive conductors, form and the corresponding T type of folded dipole profile dead slot; Described supportive conductors is fixedlyed connected with ground plate by the firm banking of its lower end.
The inboard, middle part of described left and right supportive conductors is symmetrically arranged with rectangle or trapezoidal projection.Width by changing left and right supportive conductors and both spacings thereof can be regulated the input impedance value of folded dipole, and folded dipole and microstrip feed line are mated mutually.
Described microstrip feed line comprises the balance converter part, the impedance conversion part, the RF importation, described balance converter part is by long vertical section, horizontal segment, short vertical section connects into inverted U-shaped, article two, vertical section is with left, right supportive conductors is passed through through hole respectively, the medium screw connects, and a microstrip feed line and a left side, be provided with spacing between the right supportive conductors, the long vertical section lower end of balance converter is connected with the vertical section of impedance conversion part, the horizontal segment of impedance conversion part is connected with the RF importation, the horizontal segment of described impedance conversion part, the RF importation is parallel with ground plate, and separate with dielectric, the RF importation is by the external RF equipment of transmission line.
The corresponding groove that is provided with in last radiation conductor middle part of described two folded dipoles, when making two folded dipoles be positive and negative 45 ° of quadratures, but two go up the radiation conductor tablings but do not contact; Equally, the horizontal segment of described two microstrip feed lines middle part is also corresponding to be provided with groove, but the horizontal segment tabling of two microstrip feed lines but do not contact.
As a kind of improved structure, described two ends of going up radiation conductor are not the oblong-shapeds of rule, but are gradually wide shape, make that the input impedance variation of oscillator is more mild, and the bandwidth that is obtained is wideer.
As a kind of improved structure, described left and right radiation conductor down middle part quarter-wave strong point respectively has the slit, and the both sides, slit of left and right radiation conductor down are fixedly connected by the medium collar.Introduce the condensance part by cracking, can mate the perception part compensation mutually of oscillator input impedance, can obtain 50% bandwidth with T at left and right radiation conductor down.
Described dielectric comprises air.
The medium of described medium screw comprises polytetrafluoroethylene, plastics.
The medium of the described medium collar comprises polytetrafluoroethylene, plastics.
The firm banking of described supportive conductors lower end comprises with the mode of fixedlying connected between the ground plate and is threaded, rivets, welds.
The utility model compared with prior art has following advantage and beneficial effect:
(1) impedance matching between realization antenna and the transmission line system can provide (how many MHZ are scope be) satisfied matching properties in the certain frequency scope.
(2) for present common folded dipole, the utility model has increased the flexibility ratio of regulating, and is convenient to change the impedance of oscillator, and easy and feed reaches coupling, obtains wide impedance bandwidth, and the impedance bandwidth that obtains is better than common symmetrical dipole.
(3) the utility model adapts to the needs of communication system volume expansion, it standing-wave ratio less than 1.5 condition under, have 24% bandwidth.
(4) make simply, with low cost, product is elegant in appearance, and is easy to use.
Description of drawings
Fig. 1 is a kind of double polarization T coupling of the utility model folded dipole antenna for base station structural representation.
Fig. 2 is the front view of folded dipole shown in Figure 1 and microstrip feed line.
Fig. 3 is the front view of folded dipole shown in Figure 1.
Fig. 4 is the vertical view of folded dipole shown in Figure 1 and microstrip feed line.
Fig. 5 is the front view of feed line shown in Figure 1.
Fig. 6 is second kind of structural representation of folded dipole shown in Figure 1.
Fig. 7 is the third structural representation of folded dipole shown in Figure 1.
Embodiment
Below in conjunction with embodiment and accompanying drawing, the utility model is described in further detail, but execution mode of the present utility model is not limited thereto.
Embodiment
As shown in Figure 1, this double polarization T-type matched folded dipole base station antenna 9, comprise folded dipole 1,2 and ground plate 5, microstrip feed line 3,4, folded dipole 1,2 is the T type, and two folded dipoles 1,2 are fixed on the same ground plate 5, be positive and negative 45 ° of quadratures and do not contact, two folded dipoles 1,2 link to each other with asymmetric microstrip feed line 3,4 respectively in the electromagnetic coupled mode, and two microstrip feed lines 3,4 do not contact, and its underpart and ground plate 5 are parallel and separate with dielectric; Two microstrip feed lines 3,4 are connected with RF equipment respectively; Dielectric comprises air; Described RF equipment comprises transmitter or receiver.
With folded dipole 1, microstrip feed line 3 is example, shown in Fig. 2,3,4, folded dipole 1 comprises the last radiation conductor 11 that is rectangle respectively, following radiation conductor and supportive conductors, last radiation conductor 11 is longer than following radiation conductor, last radiation conductor 11 length are 1/2nd (when band limits is 1.71~2.17GHz, being approximately 70mm) of centre frequency corresponding wavelength; Following radiation conductor and supportive conductors are made as left and right two parts of symmetry respectively, the outer end of left and right radiation conductor 14a, 14b down is connected with last radiation conductor 11 by two segment conductor 12a, 12b respectively, two terminal open circuits of last radiation conductor 11, the inner corresponding and left and right supportive conductors 15a of left and right radiation conductor 14a, 14b down, the upper end of 15b are connected; Between the upper and lower radiation conductor, between left and right down radiation conductor 14a, the 14b and be respectively arranged with spacing 13,18a between left and right supportive conductors 15a, the 15b, form and the corresponding T type of folded dipole profile dead slot, spacing range is respectively 3~4mm, 11~12mm, 11~12mm; Supportive conductors 15a, 15b firm banking 7a, the 7b by its lower end fixedlyed connected with ground plate 5, and fixedly connected mode comprises and is threaded, rivets, welds.
The inboard, middle part of left and right supportive conductors 15a, 15b is symmetrically arranged with rectangle or trapezoidal projection.Width by changing left and right supportive conductors 15a, 15b and both spacings thereof can be regulated the input impedance value of folded dipole 1, and folded dipole 1 and microstrip feed line 3 are mated mutually.The rectangle at left and right supportive conductors 15a, 15b middle part or the spacing range 18b of trapezoidal projection are 5~6mm; The scope of the width of left and right supportive conductors 15a, 15b is 6~6.5mm.
The corresponding groove 17 that is provided with in last radiation conductor 11,21 middle parts of two folded dipoles 1,2, when making two folded dipoles 1,2 be positive and negative 45 ° of quadratures, but two go up radiation conductor 11,21 tablings but do not contact.
As Fig. 2,4, shown in 5, microstrip feed line 3 comprises balance converter part (35a, 35b, 35c), impedance conversion part 31,33, RF importation 32, the balance converter part is by long vertical section 35a, horizontal segment 35b, short vertical section 35c connects into inverted U-shaped, article two, vertical section 35a, a 35c and a left side, right supportive conductors 15a, 15b is respectively by through hole (34a, 34b, 34c, 19a, 19b, 19c), the medium screw pin that polytetrafluoroethylene is made is fixedly connected, and with a left side, right supportive conductors 15a, be provided with spacing 6 between the 15b, a microstrip feed line 3 and a left side, right supportive conductors 15a, spacing 6 scopes of 15b are 2~2.5mm; The long vertical section 35a lower end of balance converter is connected with the vertical section 33 of impedance conversion part, the horizontal segment 31 of impedance conversion part is connected with RF importation 32, horizontal segment 31, the RF importation 32 of impedance conversion part are parallel with ground plate 5, and separate with dielectric, RF importation 32 is by the external RF equipment of transmission line.Dielectric is an air; The medium of medium screw can be polytetrafluoroethylene or plastics.
The horizontal segment of two microstrip feed lines 3,4 middle part is also corresponding to be provided with groove 36, but the horizontal segment tabling of two microstrip feed lines 3,4 but do not contact.
As shown in Figure 6, as a kind of improved structure, two ends of last radiation conductor 1,2 are not the oblong-shapeds of rule, but are gradually wide shape, make that the input impedance variation of oscillator is more mild, and the bandwidth that is obtained is wideer.
As shown in Figure 7, as the improved structure of another kind, left and right radiation conductor 14a, 14b down middle part quarter-wave strong point respectively has slit 10a, 10b, slit 10a, the 10b both sides of left and right radiation conductor 14a, 14b down are fixedly connected by the medium collar, and described slit 10a, 10b magnitude range are 1.5~2mm; The medium of the medium collar comprises polytetrafluoroethylene, plastics.Introduce the condensance part by cracking, can mate the perception part compensation mutually of oscillator input impedance, can obtain 50% bandwidth with T at left and right radiation conductor 14a, 14b down.
As mentioned above, just can realize the utility model preferably.

Claims (10)

1. double polarization T-type matched folded dipole base station antenna, it is characterized in that: comprise folded dipole, ground plate, microstrip feed line, described folded dipole is the T type, two folded dipoles are fixed on the same ground plate, be positive and negative 45 ° of quadratures and do not contact, two folded dipoles link to each other with asymmetric microstrip feed line respectively in the electromagnetic coupled mode, and two microstrip feed lines do not contact, and its underpart is parallel with ground plate and separate with dielectric; Two microstrip feed lines are connected with RF equipment respectively.
2. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 1, it is characterized in that: described folded dipole comprises the last radiation conductor that is rectangle respectively, following radiation conductor, supportive conductors, last radiation conductor is longer than following radiation conductor, and last radiation conductor length is 1/2nd of centre frequency corresponding wavelength; Following radiation conductor, supportive conductors are made as left and right two parts of symmetry respectively, the left and right outer end of radiation conductor down is connected with last radiation conductor respectively, two terminal open circuits of last radiation conductor, the left and right inner corresponding and upper end of left and right supportive conductors of radiation conductor down is connected; Between the upper and lower radiation conductor, between the left and right down radiation conductor and be respectively arranged with spacing between the left and right supportive conductors, form and the corresponding T type of folded dipole profile dead slot; Described supportive conductors is fixedlyed connected with ground plate by the firm banking of its lower end.
3. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 2, it is characterized in that: the inboard, middle part of described left and right supportive conductors is symmetrically arranged with rectangle or trapezoidal projection.
4. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 2, it is characterized in that: the corresponding groove that is provided with in last radiation conductor middle part of described two folded dipoles, go up the radiation conductor tablings but do not contact for two.
5. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 2, it is characterized in that: described microstrip feed line comprises the balance converter part, the impedance conversion part, the RF importation, described balance converter part is by long vertical section, horizontal segment, short vertical section connects into inverted U-shaped, article two, vertical section is with left, right supportive conductors is passed through through hole respectively, the medium screw connects, and a microstrip feed line and a left side, be provided with spacing between the right supportive conductors, the long vertical section lower end of balance converter is connected with the vertical section of impedance conversion part, the horizontal segment of impedance conversion part is connected with the RF importation, the horizontal segment of described impedance conversion part, the RF importation is parallel with ground plate, and separate with dielectric, the RF importation is by the external RF equipment of transmission line; The medium of described medium screw comprises polytetrafluoroethylene, plastics.
6. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 5, it is characterized in that: the corresponding groove that is provided with in the horizontal segment of described two microstrip feed lines middle part, the horizontal segment tabling of two microstrip feed lines but do not contact.
7. according to claim 1 or 5 described a kind of double polarization T-type matched folded dipole base station antennas, it is characterized in that: described dielectric is an air.
8. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 2, it is characterized in that: described two ends of going up radiation conductor are gradually wide shape.
9. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 2, it is characterized in that: described left and right radiation conductor down middle part quarter-wave strong point respectively has the slit, and the both sides, slit of left and right radiation conductor down are fixedly connected by the medium collar; The medium of the described medium collar comprises polytetrafluoroethylene, plastics.
10. according to the described a kind of double polarization T-type matched folded dipole base station antenna of claim 2, it is characterized in that: described fixedly connected mode comprises and is threaded, rivets, welds.
CNU2006201541621U 2006-12-01 2006-12-01 Dual-polarization T type matching folded dipole base station antenna Expired - Lifetime CN201018007Y (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102610913A (en) * 2012-04-19 2012-07-25 广东博纬通信科技有限公司 Dual-polarized broadband antenna
CN102760976A (en) * 2012-05-23 2012-10-31 深圳市华一通信技术有限公司 Radiating unit of dual-polarization antenna and dual-polarization antenna
CN105356053A (en) * 2015-11-27 2016-02-24 华南理工大学 Differential broadband dual-polarization base station antenna for improving cross polarization ratio
CN110622351A (en) * 2017-05-04 2019-12-27 华为技术有限公司 Dual polarized radiating element and antenna
US11342688B2 (en) 2017-09-12 2022-05-24 Huawei Technologies Co., Ltd. Dual-polarized radiating element and antenna

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102610913A (en) * 2012-04-19 2012-07-25 广东博纬通信科技有限公司 Dual-polarized broadband antenna
CN102760976A (en) * 2012-05-23 2012-10-31 深圳市华一通信技术有限公司 Radiating unit of dual-polarization antenna and dual-polarization antenna
CN102760976B (en) * 2012-05-23 2014-08-20 深圳市华一通信技术有限公司 Radiating unit of dual-polarization antenna and dual-polarization antenna
CN105356053A (en) * 2015-11-27 2016-02-24 华南理工大学 Differential broadband dual-polarization base station antenna for improving cross polarization ratio
CN105356053B (en) * 2015-11-27 2018-06-22 华南理工大学 Improve cross polarization than difference broadband Bipolarization antenna for base station
CN110622351A (en) * 2017-05-04 2019-12-27 华为技术有限公司 Dual polarized radiating element and antenna
US11205859B2 (en) 2017-05-04 2021-12-21 Huawei Technologies Co., Ltd. Dual-polarized radiating element and antenna
US11342688B2 (en) 2017-09-12 2022-05-24 Huawei Technologies Co., Ltd. Dual-polarized radiating element and antenna

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GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20080206

Effective date of abandoning: 20061201