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1.
介绍了一种宽带微带贴片天线单元及2元阵列的设计方法,天线工作的中心频率为rl_5OHz(S波段)。天线单元设计中采用口径耦合理论和层叠贴片天线结构,有效增大了天线的阻抗带宽。仿真结果表明该天线阵列实际增益达到11.9dB;在2.27~2.78GHz频率范围内端口驻波比小于2,相对带宽为20.4%;交叉极化电平为-31dB,证明该天线阵具有宽频带、低交叉极化等优良性能。  相似文献   

2.
摘要:运用口径耦合理论、腔模理论、反相馈电技术和多层贴片结构设计出一种新型的P波段(中心频率为0.75GHz)宽带双极化微带贴片天线。天线的两个极化端口采用共面馈电;馈电网络设计中采用短路耦合线实现反相馈电。仿真结果表明该天线两个极化端口实际增益均达到8.5dB,水平极化端口在0.64-0.85GHz频率范围内驻波比小于2,相对带宽为28%;垂直极化端口在0.68-0.85GHz频率范围内驻波比小于2,相对带宽为22.6%,两端口隔离度高于53dB。  相似文献   

3.
A 94-GHz aperture-coupled micromachined microstrip antenna   总被引:1,自引:0,他引:1  
This paper presents an aperture-coupled micromachined microstrip antenna operating at 94 GHz. The design consists of two stacked silicon substrates: (1) the top substrate, which carries the microstrip antenna, is micromachined to improve the radiation performance of the antenna and (2) the bottom substrate, which carries the microstrip feed line and the coupling slot. The measured return loss is -18 dB at 94 GHz for a 10-dB bandwidth of 10%. A maximum efficiency of 58±5% has been measured and the radiation patterns show a measured front-to-back ratio of -10 dB at 94 GHz. The measured mutual coupling is below -20 dB in both E- and H-plane directions due to the integration of small 50-μm silicon beams between the antennas. The micromachined microstrip antenna is an efficient solution to the vertical integration of antenna arrays at millimeter-wave frequencies  相似文献   

4.
This paper presents the design and development of a wideband dual polarized planar array antenna of 4 × 6 elements in C-band with a centre frequency of 5.3?GHz. The radiating element is of stacked strip slot foam inverted patch (SSFIP) configuration. The complex excitation coefficients of the antenna have been chosen in order to achieve a fixed beam-pointing by 10° and side-lobe level better than ?15?dB. The array antenna offers a VSWR bandwidth of 20% for a VSWR ratio of 2:1. The simulated and measured antenna parameters are presented.  相似文献   

5.
研究了圆极化微带阵列天线的设计方法。重点讨论了用双馈电正方形单元天线实现圆极化、高增益阵列天线的实现方法,并利用Ansoft HFSS 软件进行仿真分析,仿真结果显示,在工作频带内天线增益>13 dB,驻波<1.3,方向图E面波瓣宽度>33°,H面波瓣宽度>33°。  相似文献   

6.
马世伟  乔龙  丁旭 《电子科技》2014,27(9):115-117
设计了一种应用在无线局域网络(WLAN 2.4 GHz)和微波存取全球互通(WiMAX 3.5 GHz/1.8 GHz)无线通信领域中的小型化三频段微带贴片天线。结构设计主要通过在圆形贴片上开出一个近似T形槽的方式,该天线结构简单、尺寸小、加工方便、成本低且全向特性理想。为了便于数值分析和优化,在HFSS建立了该天线的电磁仿真模型。其研究表明,实测和仿真的结果吻合良好,该天线在其各频段内的回波损耗<-10 dB,并具有良好的方向性和增益。在3个工作频带内电压驻波<2,阻抗匹配特性良好,验证了该设计的合理性。  相似文献   

7.
用于整流天线的口径耦合圆极化微带天线的设计与实验   总被引:4,自引:0,他引:4  
提出了一种用于整流天线的新型圆极化微带天线形式,此天线采用单端口径耦合馈电,易与整流电路集成和匹配。利用电磁场仿真软件分析了天线参数对天线性能的影响,设计并加工了一个圆极化天线单元。设计值和实验值较吻合,实验结果表明该天线在10.25GHz具有良好的圆极化特性:在最大方向上圆极化轴比为0.3dB,3dB圆极化带宽达到160MHz,驻波比小于2的带宽达到800MHz。  相似文献   

8.
设计了一种S波段紧凑型双圆极化有源接收天线,该有源接收天线将微带贴片天线与90°混合电桥、低噪声放大器集成设计,既实现了有源天线的整体小型化又提高了各器件间的连接效率;并通过背馈玻璃绝缘子和一种半差分的方式馈电,在改善微带贴片天线方向图对称性的同时,简化了传统差分式馈电的复杂结构.仿真和实测结果表明,该有源接收天线在2.2~2.3 GHz内端口驻波比小于1.47,噪声系数小于0.73 dB,主瓣内轴比小于2.4 dB,G/T值大于-13.9 dB/K,与已有公开文献的有源接收单元天线相比,在保持结构紧凑的同时,其G/T值有较大幅度提升.  相似文献   

9.

The recent communication receiver requires compact size, low cost, less weight and high-performance antenna for broadband applications. This paper compares the performance of the microstrip patch antenna designed using h-BN nano ceramic substrate with antenna designed using FR4 substrate. In this proposed new substrate is developed using powder metallurgy principle. Simulated and experimental results shows that proposed substrate for patch antenna in S-band applications achieve good resonance at two different frequencies 2.2 and 2.6 GHz with reflection coefficient of ?35 and ?40 dB respectively. Same antenna structure using FR4 structure is achieving good resonance at multiple frequency and broadband characteristics in C-band and X-band of the radio spectrum.

  相似文献   

10.
研制中心频率为18 GHz的振荡型有源集成天线,包括微带天线设计、单片压控振荡器(MMIC VCO)的设计及微带天线与单片压控振荡器二者的集成。微带天线的芯片面积为4.5 mm×3.5 mm,增益为3.67 dB,中心频率为18.032 GHz,最小输入驻波系数为1.098;单片压控振荡器芯片面积1.1 mm×1.0 mm,调谐范围为15.978~18.247 GHz,输出功率大于6 dBm。振荡型有源集成天线的方向图测试结果与微带天线的特性符合,该振荡型有源集成天线能够正常工作。  相似文献   

11.
A novel planar antenna element for applications in sector antennas is proposed. The antenna element consists of three patches coupled both electromagnetically and through the feeding network to ensure 90deg beamwidth in a wide frequency range. A suspended microstrip technique has been used to ensure simultaneously low production costs and low losses within the feeding network. The designed antenna element operates within a frequency range of 5.1-5.9 GHz.  相似文献   

12.
程骏  李海华 《电子器件》2013,36(2):206-210
基于Siemens的NPN射频晶体管BFP420,设计出一款适合于S波段的低噪声放大器,本设计使用了宽带匹配技术,结合微带线和集总元件设计出宽带的匹配网络。放大器适用频率范围:1.8 GHz~3.2 GHz,可用带宽1.4 GHz,相对带宽56%,属超宽带低噪声放大器。测试结果表明,在可用频段范围内,放大器增益波动3.7 dB,输入驻波比VSWR<1.8 dB,输出驻波比VSWR<1.295 dB;1.8 GHz增益G=12.53 dB、噪声系数NF=1.128 dB;3.2 GHz增益G=8.79 dB、噪声系数NF=1.414dB。本设计可满足无线蓝牙、WIFI,Zigbee等多种2.4 GHz主流ISM无线设备的应用要求。  相似文献   

13.
设计了一种宽带圆极化介质谐振器天线,为一种鼠笼形的宽带一分四90毅相移功分微带馈电网络,采用缝隙耦合对介质谐振器顺序旋转耦合馈电。天线结构紧凑、加工简单,仿真和实测结果吻合良好,其阻抗带宽和低于3dB的轴比带宽重叠部分在1.09 GHz-1.83GHz、为50.7%。增益大于3dB 及轴比小于3dB 的波束宽度均达到90°。天线工作频率覆盖四大导航系统,包括中国的北斗系统、美国的GPS 系统、欧洲的伽利略(GALTLEO)系统和俄罗斯的格洛纳斯(GLONASS )系统的频段,天线可应用于全球卫星导航定位系统和无线宽带通信系统中。  相似文献   

14.
Garg  Ramesh Rao  K.V.S. 《Electronics letters》1983,19(10):357-358
A single-feed dual-frequency microstrip antenna is reported. It can be impedance-matched independently at the two frequencies of operation. The tested antenna has a VSWR of 1.33 at 2.32 GHz and 1.12 at 9.425 GHz. The configuration reported here can be impedance matched over a wider frequency range using standard impedance-matching techniques.  相似文献   

15.
以高介电常数介质为基底,利用辐射贴片开槽和微带馈电技术,设计了一款尺寸仅为16mm×12.45mm的小型微带天线。通过在此天线微带贴片周围加载高阻抗表面型光子晶体,有效抑制了表面波,改善了以高介电常数介质为基底的贴片天线的性能,实现了一款多频小型化PBG天线。HFSS仿真结果表明,加载高阻抗表面结构后的微带天线出现了三个谐振频点,分别为2.74、2.86和3.80GHz,其对应的增益分别达到6.02、8.38和5.69dB。所设计的光子晶体天线物理尺寸较小,方向性良好且具有多频特性,因此可为实际通信天线的应用提供参考。  相似文献   

16.

In this paper, a rectangular triple-band microstrip antenna has been designed for Bluetooth application by successively loading notches and slots of different dimension in radiating patch. The conventional microstrip antenna suffers with narrow impedance bandwidth. The current work affords an alternate option to enhance the bandwidth of antenna that resonates in triple-band operation. Initially, the antenna is resonating in single-band but after loading slots, the bandwidth of microstrip antenna has been obtained 1.97% (lower band), 10.35% (middle band) and 33.16% (upper band) resonating in triple-band with three resonant frequency at 1.422 GHz (lower resonant frequency), 1.791 GHz (middle resonant frequency) and 2.467 GHz (higher resonant frequency). The suggested antenna has upper frequency band in the range of 2.045–2.858 GHz resonating at 2.467 GHz frequency and it is appropriate for Bluetooth applications (2.40–2.48 GHz) and both lower band useful for other wireless (L-band) applications. The return loss of upper band is ??34.52 dB at 2.467 GHz. The suggested microstrip antenna is directly fed by 50 ohm microstrip line feed. The suggested antenna has been designed, simulated and analyzed by IE3D simulation software.

  相似文献   

17.
介绍了一种P波段宽带双极化微带天线单元及2元阵列的设计。天线单元设计中采用口径耦合理论和多层贴片结构,增大了天线的带宽,两个极化端口采用共面馈电;馈电网络设计中采用反相馈电技术有效抑制了交叉极化,采用短路耦合线实现反相馈电,降低了对天线带宽的影响。仿真结果表明,该天线阵实际增益达到11.8dB,水平极化端口在0.68~0.86GHz频率范围内驻波比小于2,相对带宽为24%;垂直极化端口在0.63~0.86GHz频率范围内驻波比小于2,相对带宽为30.6%,两端口隔离度高于40dB。  相似文献   

18.
In recent years, microstrip antennas have been more widely applied in satellite communications, mobile phones, unmanned aerial vehicle (UAV), and weapons. A micro-electro-mechanical systems-based (MEMSbased) high-resistance silicon C-band microstrip antenna array has been designed for the intelligent ammunition. The center frequency is 4.5 GHz. A cavity has been designed in substrate to reduce the dielectric constant of silicon and high-resistance silicon has been used as the material of substrate to improve the gain of antenna. It is very easy to be manufactured by using MEMS technology because of the improved structure of the antenna. The results show that the gain of the antenna is 8 dB and voltage standing wave ratio (VSWR) is less than 2 by the analysis and simulation in high frequency structure simulator (HFSS).  相似文献   

19.
一种新型的具有带阻特性的超宽带微带天线   总被引:1,自引:1,他引:0  
设计制作了一种新型的具有带阻特性的超宽带微带天线。天线采用50Ω共面波导馈电结构,辐射单元采用圆形金属贴片,在圆形贴片上开一个倒U形槽,实现了天线的带阻特性。测试结果表明:在频率段2.8-12.0 GHz内(除5.00-5.95 GHz外)天线驻波比小于2,且天线具有近似全向辐射的特性;而天线在频率段5.00-5.95 GHz内形成了阻带,从而有效阻隔了WLAN(5.150-5.825 GHz)频率段。该天线具有尺寸小,易于与微波电路集成等优点,可以用于超宽带系统。  相似文献   

20.
一种用于WLAN的宽频带微带天线   总被引:1,自引:0,他引:1  
采用双层结构拓展矩形微带天线带宽,利用有限积分法软件研究了寄生单元大小、以及两层贴片间的空气间隔对天线性能的影响。优化设计出的天线在电压驻波比(Voltage Standing Wave Ratio,VSWR)≤2的情况下,将原普通贴片天线4.5%的带宽提高到了23.6%,且增益在整个频带范围内达到6dB以上。该天线的工作频带完全覆盖无线局域网(Wireless Local Area Network,WLAN)的IEEE802.11a标准(5.15~5.825GHz)。实验测量结果与数值模拟结果相吻合。  相似文献   

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