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1.
为了减小极小距离多输入多输出(multiple-input multiple-output, MIMO)天线之间的相互耦合,设计了一种极紧凑的高隔离度的双频MIMO贴片天线,谐振频率分别为2.45 GHz和3.5 GHz。该MIMO天线由两个对称的双层U型槽贴片天线组成,其中边与边的距离为0.5 mm(0.004λ0,λ0为中心频率2.45 GHz时的自由空间波长)。利用不同宽度的双层金属线切割对作为超表面单元,该超表面体积紧凑,可以显著降低天线单元之间的相互耦合。仿真和测量结果表明:在天线工作频段2.4~2.5 GHz和3.4~3.6 GHz范围内,单元间的隔离度可以提高到30 dB以上,并且两个天线端口阻抗匹配良好,同时在低频段的总效率提高了9%左右;两天线间的包络相关系数(envelop correlation coefficient,ECC)在2.45 GHz时由0.33降到0.01,在3.5 GHz时由0.09降到0.006,所设计天线具有良好的辐射性能。  相似文献   

2.
《现代电子技术》2019,(5):36-39
文中设计一种具有高隔离度的双频MIMO天线。将两款宽带毫米波天线垂直正交地放置于FR-4介质基板上,得到结构紧凑的双端口极化分集天线和四端口MIMO天线,利用其相互正交的极化方式提高了相邻端口间的隔离度。为了满足双频特性,分别在两天线单元的辐射贴片上刻蚀半圆环形和U形缝隙,地面开了长方形槽。通过HFSS仿真分析表明,所设计的天线可工作在28 GHz(24.5~29 GHz)和39 GHz(36~47 GHz),且在工作频段内具有较好的辐射特性,相邻端口间的隔离度达到了30 dB以上。同时,在天线上方加载了4根金属条作为引向器,提高了天线的增益。  相似文献   

3.
本文给出了一款小型化多频段平面印刷单极子天线的设计和分析过程.该天线由一个矩形主辐射贴片和两个附属辐射枝节组成.主辐射贴片和两个附属枝节分别产生三个通带覆盖2.4/5.2/5.8GHz的WLAN工作频段和2.5/3.5/5.5GHz的WiMAX工作频段.天线的仿真结果表明,在WLAN频段以及WiMAX频段天线具有良好的阻抗带宽和辐射效率,天线的总尺寸为20mm×30mm×1.6 mm,结构紧凑,易于制作,适用于WLAN和WiMAX系统.  相似文献   

4.
汪江宇  唐涛  邓彪 《微波学报》2017,33(4):63-66
设计了一款双频双端口微带阵列天线,该天线由两个矩形辐射贴片构成。将两个辐射贴片平行放置,在其中一个低频对应的较大尺寸贴片上开矩形槽,将高频对应的较小尺寸贴片嵌套在矩形槽中。相互嵌套的结构形式带来严重的端口耦合,而天线端口间的互耦是制约阵列天线性能的主要因素之一,在辐射贴片间加载两条平行微带线用来隔离耦合电流,并且在平行微带线中间设置圆形接地贴片,通过过孔将微带线上耦合电流引入地板,同时在高频辐射贴片嵌入部分的垂直边两侧开缝,能进一步有效减小耦合电流,提高隔离度。经过隔离度优化设计后,最终实现天线在工作频带内隔离度均大于20 dB。天线的工作频段分别为15. 2 GHz(14. 83 ~16. 10 GHz)和5. 8GHz(5. 68 ~5. 88 GHz),对应的最大增益分别为7. 8 dBi 和6. 8 dBi。天线两个辐射贴片尺寸分别为0. 36λ(15. 2GHz)和0. 37λ(5. 8 GHz),该天线辐射单元相互嵌套,满足小型化设计需求。  相似文献   

5.
一种新型2.4GHz频段加载贴片天线的设计   总被引:3,自引:3,他引:0  
采用在贴片上开槽和加载的方法,设计了一种用于2.4GHz频段无线通信设备、内缩渐变线馈电的新型结构贴片天线.给出仿真设计的性能和多个天线样品的实测输入驻波比曲线和远区辐射特性图,详细研究分析了不同加载条件、不同辐射边尺寸对输入驻波比的影响.实测结果表明,该天线在2.4GHz频段上获得超过15%的相对带宽(VSWR<2),而且尺寸比相应频段的微带贴片天线更加微型化.  相似文献   

6.
提出了一款紧凑型多陷波特性超宽带天线,该天线由圆形贴片和改进的接地板组成。采用在辐射贴片上开两个圆弧状U形槽和接地板上开一个U形窄缝隙的结构使其具有多陷波特性。天线的体积仅为32 mm′25 mm′1.6 mm,结构紧凑。仿真与测试结果表明:该天线工作带宽为2.8 ~ 16 GHz,实现了3.2~3.8 GHz、4.5~5.5 GHz 和7.2~8.6 GHz 3个频段的陷波特性,有效阻隔了WiMAX(3.3~ 3.6 GHz)、大容量微波通信频段(4.5~5 GHz)、部分WLAN(5.1~5.35 GHz)、X波段(7.25~7.75 GHz)和国际电信联盟(ITU)波段(8.01~8.5 GHz)窄带信号的干扰。除陷波频段外该天线具有良好性能和辐射方向性,更适合应用于超宽带系统。  相似文献   

7.
易钊  肖海林  胡振 《微波学报》2013,29(4):62-64
设计了一种可工作于WLAN 2.4GHz频段的小型化双极化天线.该天线采用双层对称结构介质板,把辐射贴片四边分别切割成凸字形形状,实现了天线小型化和有效展宽天线带宽.同时在接地板开4个对称的十字形缝隙,进一步拓宽天线带宽和明显减小天线的整体尺寸并提高了天线辐射性能.由此设计制作的天线实验结果为:小于-10dB回波损耗的频段为2.37 ~ 2.59GHz,相对阻抗带宽达9.1%,端口隔离度达到了33dB,增益最大值约3.63 dBi,表明该微带天线具有宽频带和良好的辐射性能.此外,该天线结构简单紧凑,易于加工制作和集成,适合应用于移动终端.  相似文献   

8.
为满足5G 移动通信系统对信道容量的要求,提出了一种应用于5G 移动终端的双频多输入多输出(MIMO)天线系统。它由沿移动终端两个长边垂直放置的八个天线单元组成。该天线系统可以覆盖中国工业和信息化部(MIIT)所规划的3.3 ~ 3.6 GHz 和4.8 ~ 5 GHz 两个频段,且低频段和高频段的天线效率分别高于61% 和50%。通过优化各天线的相对位置和放置方向,使得各端口之间的隔离度优于15 dB。为更好评估天线系统性能,计算了MIMO天线的包络相关系数(ECC)和信道容量(CC)。所得该MIMO 天线系统在工作频段内ECC均小于0.1,且信道容量峰值可以达到36.8 bps/ Hz。同时,制作并测量了MIMO 天线样品,测试结果与仿真结果表现出良好的一致性。  相似文献   

9.
提出了一种可应用于5G无线通信的小型化双频微带天线,该天线采用偏心侧馈和贴片开槽的方式使其具有双频工作特性。首先研究了微带贴片尺寸和贴片上倒L型开槽对天线谐振频率的影响;其次通过在微带贴片的馈点旁增加矩形细缝来调节天线的阻抗匹配特性;最后,利用电磁仿真软件HFSS对所提出的天线的性能进行了仿真与优化,结果表明其两个工作频段可覆盖3.5~3.6GHz和4.8~5.0GHz的5G频段,两个工作频段内的回波损耗最大为23dB,辐射增益分别为2.83dB和4.35dB。  相似文献   

10.
为有效抑制部分毫米波通信信号干扰,实现无线通信设备小型化,设计了一款具有双陷波特性的毫米波宽带MIMO天线。天线基本单元由辐射单元、微带馈线、Rogers RO4350B基板以及接地板构成。通过在天线辐射贴片刻蚀U型槽,以及接地板添加倒U型枝节,可在工作频段内产生双陷波特性;进一步在接地板引入圆形开槽使MIMO天线获得良好的隔离度。该天线结构紧凑,尺寸仅为26.7 mm×16.67 mm×1.524 mm,工作于21~40 GHz频段,其中陷波频段为22.04~24.72 GHz和25.96~31.2 GHz。结果表明:该天线在工作频段内隔离度大于20 dB,最大增益可达8.49 dBi,包络相关系数(ECC)均小于0.002,具有良好的辐射和增益性能,在毫米波超宽带通信中具有应用潜力。  相似文献   

11.

In this article a modified hybridized fractal geometry i.e., fractal antenna is proposed for Multiple Input Multiple Output (MIMO) applications. These geometries are based on Minkowski curves and Koch curves located around the boundaries of the microstrip patch of rectangular-shaped patch. The hybridized model for fractal geometry is designed and analyzed on an FR4 substrate having a thickness of 1.47 mm for the Industrial, Scientific, and Medical (ISM) frequency band. But due to the proposed fractal geometry, it resonates at three bands (2.45 GHz, 3.67 GHz, and 5.88 GHz) and it is covering the ISM band from 2.42 GHz to 2.48 GHz with a VSWR value is 1.48. Further, a 2?×?2 antenna for MIMO application is proposed by considering identical antenna elements placed in parallel on the same substrate. MIMO antenna resonates at three frequencies as same as single antenna elements and covering the same operating bands. The two elements of MIMO confguration are simulated for various sets of distance values, and optimized distance is obtained 18 mm at which a proposed antenna provides low mutual coupling value, low Envelope Correlation Coefficient (ECC), and high diversity and peak gain. The calculated values of ECC and diversity gain are 0.0002 and 10 dB, respectively which satisfy the criteria of MIMO application. The design has been experimentally validated and an appropriate similarity of experimental and simulated results is achieved.

  相似文献   

12.
A novel compact Swastika shaped patch antenna is designed in the present work, which can be used for Multiple Input Multiple Output (MIMO) systems. The proposed two element MIMO system resonates at a triband of 3.3 GHz, 5.8 GHz, and 7.1 GHz with an improved impedance bandwidth of 37% and a reduced mutual coupling of ?33 dB. These results are better compared to a normal E shaped patch antenna designed with same size and thickness, achieved without using any additional decoupling methods. A 2??2 MIMO system employing the Swastika shaped patch antennas is analyzed using computational electromagnetic ray tracing software for an indoor environment. The results show an improvement in the capacity compared to a 2??2 MIMO system developed with dipole antennas. The proposed antenna is a good choice for MIMO systems operating for several Ultra WideBand (UWB) applications.  相似文献   

13.
赵璐 《微波学报》2015,31(4):16-19
设计了一种双频段双极化的阵列天线。该阵列天线采用多层微带天线形式,七层结构,通过口径耦 合和微带线边馈两种馈电方式实现双线极化,在辐射贴片上方增加寄生贴片以扩展带宽,实现双频段。天线工作在 12.25 ~12.75GHz 及14 ~ 14.5GHz,实测增益18dB 左右,隔离度大于40dB。该天线剖面低,重量轻,可作为子阵组 成更大规模的双频段双极化阵列。  相似文献   

14.
提出了一种新型宽带双频圆极化射频识别(RFID)读写天线,由上层的旋转对称折合振子和缝隙加载的方形贴片以及下层的紧凑型馈电网络构成。天线具有两个外部端口,分别激励低频0.9 GHz和高频2.45 GHz双频段的圆极化辐射。借助HFSS对天线进行了建模、仿真和优化,最后采用FR4板材制作天线实物并完成了试验测试。天线的外部尺寸为0.6λ0×0.6λ0×0.1λ0(λ0为0.9 GHz频点下的自由空间波长),测试结果表明,天线在低频段和高频段的-10 dB阻抗带宽和3dB轴比带宽分别为91.1%(4.9%)和87.8%(1.3%),频段内的峰值增益为5.48 dBic(3.63 dBic),最小轴比为1.1 dB(1.2 dB),在高低频段内,天线的辐射方向图对称稳定。该天线不仅能够满足全球通用型UHF频段(0.84~0.96 GHz)和ISM频段(2.4~2.5 GHz)RFID读写应用需求,而且具有低成本、易加工等优点,在物联网领域将具有很好的应用前景。  相似文献   

15.
A dual-band antenna design that covers the 2.26-2.54 GHz and 5.14-6.10 GHz bands is presented. The proposed antenna design consists of two patch radiators suspended above a ground plane. The performance in the lower and upper bands can be controlled with less mutual coupling effect. The antenna also features less beam squinting of the radiation patterns at boresight for both operating bands.  相似文献   

16.
This work proposes an electrical compact triple-bands antenna founded on a composite left-/right-handed approach. This structure contains a rectangular patch combined with two unit cells based on the metamaterial properties that are used to produce wide electrical lengths in miniature physical sizes. Thus, the presented antenna is designed with a lower resonant frequency and miniature physical dimensions compared to conventional antennas. The suggested antenna has been produced on top of the FR4 substrate having tan δ = 0.022, εr = 4.58, and a size of 28 × 16 × 1.6 mm3. This structure provides three bandwidths of (2.391–2.54 GHz), (3.42–3.56 GHz), and (5.02–11.40 GHz). Additionally, a multi-input multioutput (MIMO) antenna is designed by placing two similar radiating patches in a perpendicular shape. Therefore, this design approach has been used to achieve an important isolation among ports and less than −30 dB at frequency bands. The results of radiation patterns, envelope correlation coefficient, diversity gain, and channel capacity loss are below to 0.06, 10 dB, and 0.4 b/s/Hz respectively, which confirms that the MIMO antenna is compatible with wireless MIMO devices. These antennas have been modeled and experimentally confirmed, and the results have proven that the suggested antennas are useable and can support multi-standard wireless applications.  相似文献   

17.
设计一种双频宽带多输入多输出(MIMO)天线。天线采用微带线耦合馈电,在天线的表面开有圆环形缝隙,把宽缝隙和窄缝隙结合到一起,因此在辐射体上同时存在2种缝隙结构;天线采用双面结构,带宽范围为1.7~2.33 GHz和3.2~3.9 GHz,2个频带的带宽分别为630 MHz和700 MHz,可用于移动通信的DCS(1 710~1 880 MHz)、PCS(1 850~1 990 MHz)、UMTS(1 920~2 170 MHz)以及WIMAX(3.3~3.6 GHz)。天线在低频段的最大增益为3.6 dB,在高频段的最大增益为5.1 dB,隔离度在-20 dB以下,符合MIMO天线的设计需求。  相似文献   

18.
Printed double-T monopole antenna for 2.4/5.2 GHz dual-band WLAN operations   总被引:5,自引:0,他引:5  
A novel and simple printed dual-band double-T monopole antenna is proposed. The antenna comprises two stacked T-shaped monopoles of different sizes, which generate two separate resonant modes for the desired dual-band operation. The proposed antenna has a low profile and can easily be fed by using a 50 /spl Omega/ microstrip line. Prototypes of the proposed antenna designed for WLAN operations in the 2.4 and 5.2 GHz bands have been constructed and tested. Good radiation characteristics of the proposed antenna have been obtained. Effects of varying the monopole dimensions and the ground-plane size on the antenna performance have also been studied.  相似文献   

19.
魏仁霄  白育堃  马颖 《激光与红外》2016,46(9):1152-1155
提出了一种工作在太赫兹频段的双频缝隙贴片天线。在天线辐射贴片上加载“C”、“E”型辐射缝隙,改变天线表面电流的路径来实现双频特性。通过HFSS 15.0仿真软件对天线模型进行仿真,天线可以同时在300 GHz(291~306 GHz)和640 GHz(632~656 GHz)的频段下工作,最大增益达到了7.38 dB和10.50 dB。该双频天线结构简单,各项性能指标稳定,对于工作在太赫兹频段上的通信系统和无线传输系统具有一定的应用价值。  相似文献   

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