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1.
提出了一种新型宽频带2×2方形缝隙槽圆极化天线阵.天线阵包含一个连续旋转馈电结构、4个非对称U型馈电枝节和一个方形槽接地板.与传统圆极化天线阵所采用的L型馈电枝节不同,首次提出了一种新型非对称U形馈电枝节来改善天线的圆极化性能.利用这些枝节和缝隙槽作为微扰元素,缝隙槽天线阵可以激发多重圆极化谐振模式,进而产生宽频带的圆...  相似文献   

2.
设计了一副宽带高增益圆极化微带天线,并进行组阵分析。天线中心频率2.6 GHz,通过增加寄生贴片和空气层来提高天线单元的增益和带宽。上下两层介质板上边长不同的切角方形贴片分别激励一个低频与高频的圆极化模,有效地拓宽了轴比带宽。仿真结果表明,反射系数|S11|<-10 dB带宽21.8%,3 dB轴比带宽12.0%,中心频率点增益9.0 dBi。对天线单元进行加工测试,与仿真结果较为吻合。设计了2×4元阵列,并进行了仿真,增益提升至17.5 dBi,3 dB轴比带宽10.4%。  相似文献   

3.
杨放  卫铭斐  王民  王纯  周军妮 《电信科学》2015,31(11):72-76
提出了一种十字形缝隙加载的小型宽带及圆极化微带贴片天线的设计方法。该天线通过在方形贴片上加载一个大尺寸的十字形缝隙实现天线的尺寸缩减,介质基片采用由FR4和空气层组成的层叠结构,在缝隙中嵌入L型枝节,只需通过调整枝节上同轴线馈电点的位置来获得圆极化或宽带阻抗匹配。ANSYS HFSS仿真分析表明,天线的圆极化带宽(AR≤3 dB)为1.7%,阻抗带宽(VSWR≤2)为5.8%,天线在宽带范围内具有稳定的增益,峰值增益为7.8 dB,同时贴片面积缩减了52.3%。改变馈电点的位置可调节两个谐振频率使天线阻抗带宽达到9.4%,比传统的微带贴片天线阻抗带宽提高了114%。  相似文献   

4.
提出了一种应用于海事卫星通信海上宽带系统终端的圆极化叠层微带天线,该天线选用廉价FR4板、空气介质和对角线切角的正方形贴片组成叠层结构,采用不等功率四馈电技术激励主辐射贴片,展宽了天线的阻抗带宽和轴比带宽。文中给出了设计思路,并利用电磁仿真软件HFSS分析了天线性能,仿真与测试结果吻合良好。结果表明:天线具有良好的性能,VSWR≤1.5的阻抗带宽测量值达23.4%(1453~1838MHz),轴比小于3dB的圆极化带宽仿真值达25.6%(1360~1760MHz)。在海事卫星工作频段内VSWR小于1.2,轴比小于1.5dB,增益大于9dBi。所设计的天线满足Fleet Broadband系统FB150业务的需求。  相似文献   

5.
研究了一种小型化宽频带交叉偶极子结构卫星导航终端天线。天线结构由交叉偶极子臂、耦合贴片和侧面开斜槽的反射腔组成,反射腔的侧面斜槽可调节电流分布,实现了天线宽阻抗带宽、宽轴比带宽和尺寸的小型化。测量结果表明,■dB阻抗带宽实测为0.96~2.12 GHz,轴比≤3 dB的圆极化带宽为1.06~1.84 GHz,在北斗卫星导航系统B1、B2、B3频段中心频率点的实测增益分别为6.07 dBi、5.25 dBi、6.2 dBi。该天线频带宽、结构简单,不需要复杂的圆极化馈电网络,适合批量生产。  相似文献   

6.
设计了一款宽波束的圆极化天线单元以及1×4的天线阵列,实现了一维的宽角圆极化扫描.天线单元由单层的辐射贴片和介质基片集成波导(substrate integrated waveguide,SIW)背腔构成,通过在辐射贴片上切角微扰和开U型槽实现右旋圆极化,并利用SIW背腔缝隙展宽波束.同时利用SIW背腔减小阵列单元间的互耦,实现宽角圆极化扫描.仿真与测试结果表明,天线阵列实现了扫描角为-53°~57°,3 dB波束宽度覆盖范围为-76°~79°,在主波束扫描覆盖范围内轴比(axial ratio,AR)均小于3 dB,且在扫描范围内增益变化平稳,可实现良好的宽角范围的圆极化扫描特性.  相似文献   

7.
设计了一种倒L形枝节加载宽带圆极化缝隙天线。天线为单层矩形结构,采用共面波导(CPW)馈电,通过在馈线上端加载倒L形枝节和在环形接地面上加载T 形枝节,实现了天线的宽阻抗带宽和宽轴比带宽特性。实测结果表明,S11 £-10 dB 的阻抗带宽达到115%(1.6-5.9 GHz),轴比£3 dB 的圆极化带宽为48.3% (2.2-3.6 GHz)。该天线结构简单、易于制作,具有较好的应用前景。  相似文献   

8.
一种CPW馈电圆形缝隙宽带圆极化天线   总被引:1,自引:0,他引:1  
设计了一种共面波导(CPW)单端口馈电的圆形缝隙宽带圆极化(CP)印刷天线。该天线通过在圆形缝隙侧面附加圆形枝节,结合CPW端口伸出的激励带条,激励出一对相位差90°的差分正交简并模,从而辐射圆极化波。对天线模型进行了优化设计和实物加工,测试结果表明,该天线的轴比带宽(AR<3dB)达到12.5%;最大增益为3.8dB,在轴比带宽内增益的变化幅度小于1dB。  相似文献   

9.
提出了一种基于非对称V型槽加载的探针馈电圆极化单层钻石形微带贴片天线。通过调节V型槽的槽宽、槽长、开槽倾角及馈电点位置可实现微带贴片天线的圆极化辐射。研究了V型槽尺寸对微带贴片天线性能的影响。结果表明:介质厚度为0.051λ_0(λ_0为中心工作波长)时,天线的阻抗带宽大于9%(VSWR≤2),圆极化带宽为3%(AR≤3),最大增益可达6.29 d Bi,最小轴比小于0.5 d B。  相似文献   

10.
基于传统对拓型Vivaldi天线, 提出一种新型小尺寸对拓型Vivaldi天线.采用波纹、开眼和引向器等结构来展宽天线的工作带宽, 并分别对这三种结构对带宽的影响进行了分析.利用HFSS仿真优化得到的结构参数, 分别在两种介质材料上, 加工并测试了带引向器波纹开眼对拓型Vivaldi天线, 实测与仿真结果吻合.仿真与测试结果表明:两种介质上的天线工作频带均包含3~20 GHz, 尺寸仅为42.56 mm×40.16 mm×0.813 mm, 带内回波损耗S11低于-10 dB, 带内增益均大于3 dBi, 最大增益达7.3 dBi, 交叉极化均小于-15 dB, 50%以上的频带交叉极化小于-20 dB, 最小可达-25 dB, 天线具有稳定的方向图, 良好的波形保真度, 是一种宽波束天线.  相似文献   

11.
A coplanar waveguide fed slot antenna for wideband circular polarization is designed and experimentally validated. The rectangular slot is excited using a stepped feed line terminated on a circular disc shaped tuning stub. To obtain circular polarization, inverted L-shaped strips are attached to the ground plane at the opposite corners while a rectangular slit is cut in the circular disc. The combined bandwidth (3-dB axial ratio and 10 dB impedance matching) achieved is 48% (4.35–7.1 GHz) under simulation and 40% (4.75–7.1 GHz) in measurement. The gain of the antenna is next enhanced by the application of a double layered square loop frequency selective surface. The frequency selective surface is used as a reflector placed beneath the antenna at an optimum distance. An improvement of about 4 dB is seen in the measured peak gain over most of the operating band. Experimental results are presented to characterize the antenna and the frequency selective surface and they are found to be in good agreement with the simulated results.  相似文献   

12.
为提升5G无线通信系统容量,设计了一款基于V 形缝隙耦合馈电的宽带高增益圆极化天线。该天线采用双层辐射贴片结构,拓展天线的阻抗带宽,并分别在辐射贴片和寄生贴片上刻蚀一对半径不等、位置正交的双圆形缝隙,有效改善了天线的圆极化特性。通过加载平板反射器提高天线的前后比,实现良好的定向辐射。实测结果表明,驻波比小于2的阻抗带宽为53.55% (2.27~3.93 GHz),在半功率波束宽度范围内轴比小于3 dB,轴比带宽为27.38%(2.9~3.82 GHz),在工作频带内实测的天线平均增益达到8.22 dBi。该天线适合作为5G多天线系统中的智能天线单元进行自适应波束赋形。  相似文献   

13.
In this article, a broadband circularly polarised slot antenna fed by a single microstrip line is implemented. The proposed antenna is composed of an unequilateral hexagonal slot to implement circular polarisation and tapered microstrip feeding line to enhance the impedance bandwidth. A conducting reflector is also employed to enhance the antenna gain. The proposed antenna, 60 mm × 60 mm × 18.12 mm in size, was fabricated and tested. The measured??10 dB reflection bandwidth and 3 dB axial ratio bandwidth were 48.9% and 17%, respectively. The measured gain of the fabricated antenna ranged from 5.4 dBi to 6 dBi within an axial ratio bandwidth of 3 dB.  相似文献   

14.
In this paper, a polarization and frequency reconfigurable antenna with double layer metasurface, responsible for frequency and polarization reconfiguration respectively, is proposed. This antenna could operate in linear polarization in 4 GHz and circular polarization in 5 GHz band. By rotating the frequency reconfiguration metasurface, the linear polarization (LP) operating frequency can be continuously changed from 4 GHz to 4.35 GHz (8.4%) with circular polarization operating frequency around 5 GHz unchanged. Moreover, polarization of the whole antenna at 5 GHz can be reconfigured to linear polarization (LP), right-hand circular polarization (RHCP) and left-hand circular polarization (LHCP) by rotating polarization reconfiguration metasurface, the 3 dB axial ratio bandwidth is 5.0–5.2 GHz (4%). In all states, gain of the antenna achieves 5 dBi.  相似文献   

15.
设计了一种宽带高增益圆极化天线。天线采用双同轴线激励以及威尔金森功分器和90°相位比较器的馈电网络形式实现了天线的宽带圆极化特性。该馈电网络形式能在较宽的频带范围内保持稳定的幅度和相位。通过在蝶形天线外围引入方形环,增加了天线的有效辐射面积,从而显著提高了天线的增益。测试结果显示,该圆极化天线VSWR<1.5的阻抗带宽达到63.6%,3 dB轴比带宽达到66.7%,且在1.1~1.6 GHz频段范围内,右旋圆极化增益>9.4 dB。  相似文献   

16.
面向超高频(UHF)通用型射频识别(RFID)读写器天线的应用需求,设计了一款完全覆盖全球UHF(840-960MHz)频段的RFID圆极化读写器天线。天线采用平面缝隙贴片结构,以共面波导(CPW)馈电方式实现宽频带圆极化特性。测试结果表明,天线的阻抗带宽为735-1014MHz(S11<-10dB),相对带宽31.9%,并且在840-960MHz频段内S11<-20dB,3dB轴比带宽为838-1134MHz,相对带宽30.0%,工作频带内有大于3.5dBi的平坦增益。仿真结果与测试结果基本吻合,天线结构精简,易于加工,满足全球UHF RFID读写器天线的应用需求。  相似文献   

17.
A dual symmetrical coplanar waveguide (CPW)-fed small size wideband printed square slot antenna (SSA) with dual linearly and circularly polarized radiation capability is presented. The antenna is composed using a square slot, two symmetrical orthogonal CPW feed lines connected to horizontal and vertical arm of L-shaped radiator, an embedded parasitic inverted-L strip at the lower left corner of the square ground slot and engraving slots in the ground plane. Circular polarization (CP) is achieved due to two orthogonal CPW feed lines and a common L-shaped radiator. Isolation between ports is improved by engraving slots at the lower left corner of ground plane and embedded parasitic inverted-L strip. The sense of dual-polarization can be changed in pass-band by changing the port excitation. Measured antenna reveals that an 84.4% (4.6 GHz, 3.15–7.75 GHz) −10 dB impedance bandwidth (IBW) and about 33% (2.03 GHz, 5.12–7.15 GHz) 3-dB axial ratio bandwidth (ARBW). Isolation between ports <−16 dB is achieved over usable CP band.  相似文献   

18.
赵卫标  董涛  王昕  韩琳 《微波学报》2016,32(3):28-31
为了简化方形切角圆极化微带天线单元的设计流程,提出了一种新颖的开槽切角圆极化微带天线单元形式。利用在微带天线单元上开矩形槽的方法,避免了调试切角圆极化单元的谐振频点和轴比时的反复迭代过程,缩短了调试时间。分析了矩形槽的不同宽度和深度对阻抗和轴比的影响,并通过仿真设计出一款性能良好的微带天线单元。单层微带天线单元仿真的最终阻抗相对带宽(S11 <-10 dB)为2. 05% (1. 980 ~ 2. 021 GHz);仿真的最终轴比相对带宽(AR<3 dB)为0. 50%(1. 995 ~2. 005 GHz)。加工了天线单元实物并进行测试,实测的阻抗相对带宽(S11 <-10 dB)为2. 05%(1. 975 ~2. 016 GHz);实测的轴比相对带宽(AR<3 dB)为0. 50% (1. 990 ~ 2. 000 GHz)。实测结果与仿真结果具有良好的一致性,验证了设计的正确性。  相似文献   

19.
Broadband microstrip antenna (MSA) is realised by cutting the slot at an appropriate position inside the patch. The bandwidth (BW) of the rectangular MSA (RMSA) has been increased by cutting an L-shaped slot inside the patch and it gives a BW of more than 550?MHz (>25%). The reported antenna has a peak gain of 9?dBi which reduces to less than 4?dBi towards the higher frequencies of BW. In this article, an analysis to study the broadband response of the L-shaped slot-cut RMSA is presented. Through the analysis, it was observed that the slot does not introduce any mode but modifies the orthogonal and higher-order TM11 and TM20 mode resonance frequencies of the patch and along with the TM01 mode realises broader BW. Since TM11 mode is dominant towards the higher frequencies of the BW, the cross-polarisation levels increases, which reduces the antenna gain to less than 4?dBi.  相似文献   

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