标题: 适用于极小型无线网路收发器之双紧邻天线设计
Two Closely Spaced MIMO Antennas Designed Within a Very Limited Space for Small WiFi Dongle Applications
作者: 王柏翔
Wang, Po-Shiang
钟世忠
Chung, Shyh-Jong
电机学院通讯与网路科技产业专班
关键字: 多重输入多重输出;隔离度;无线网路;MIMO;Isolation;WiFi
公开日期: 2009
摘要: 本论文提出适用于2.4 GHz极小型无线网路收发器的双天线架构。由于设计面积仅为6.3 × 12.9 mm2 (0.0514 λ0 × 0.1053 λ0),此面积相对于天线操作频率是相当小的,在这么狭小的空间里,天线间的耦合效应是非常严重的。由于一般天线设计隔离度仅约为2 dB左右,因此天线要达到良好的阻抗匹配与隔离度相当具有挑战性。本篇论文在考虑实际内部电路屏蔽盒环境下,提出简洁的双天线设计概念,以增加此天线设计的实用性,使得天线在达到良好的阻抗匹配的同时,也能获得较好的隔离度。首先,透过馈入点与天线开路点摆放位置的探讨,可得知电感性耦合较电容性耦合影响隔离度较小,所以本论文采用馈入点靠近方式来设计天线。而天线绕线设计采用螺旋状的走线,藉由螺旋状走线提供的电感效应,帮助天线缩小化。接着在两支天线中间加入寄生元件,也可以进一步改善隔离度。因为天线设计空间尺寸极小,为了提升天线辐射特性,可利用双层叠板架构来增加天线设计空间。本论文提出的天线架构,馈入点间距离只有1.9 mm (0.0155 λ0),其实际量测的最小隔离度可达到8.54 dB,在全向性平面上的平均辐射增益为 -1.43 dBi,模拟与量测结果一致皆符合无线网路应用需求。
In this thesis, a MIMO (Multi-input Multi-output) antenna system for small 2.4GHz WiFi dongle applications is investigated. The overall size of the MIMO antenna system is only 6.3 × 12.9 mm2 (0.0514 λ0 × 0.1053 λ0), which is a quite small area as respect to the antenna operating frequency. There is an extremely strong mutual coupling between antennas. The isolation is only about 2 dB when normal antenna design is adopted. It is challenging to achieve good impedance matching and isolation. In this thesis, the simple dual-antenna design concepts is proposed in detail to achieve the goal with considering shielding box to fit the practical situation. First, through the discussions of positions of ports and open ends, it is clear to know that the conductive coupling is better than capacitive in isolation. Thus, the antenna design of proposed structure with close ports. This structure consists of two antennas, which are PIFAs(Planar Inverted-F Antenna) with spiral tails. The spiral tails provides inductive loading, which is helpful for miniaturalization. Furthermore, it can also improve isolation by inserting a parasitic element in the middle of antennas. Since the size of antenna design space is very limited, a double layer structure is used to enhance radiation properties. The proposed antennas with 1.9 mm (0.0155λ0) separation between the antenna ports have measured isolation of 8.54 dB. The measured average gain is -1.43 dBi on the omnidirectional radiation plane. The simulation and measurement results come to a great agreement.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079692507
http://hdl.handle.net/11536/44159
显示于类别:Thesis


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