标题: 印刷偶级天线组合KA-频带检波器之设计与量测
THE DESIGN AND MEASUREMENT OF A KA-BAND PRINTED DIPOLE RECTENNAZENG
作者: 许智闵
Xu, Zhi-Min
周复芳
Zhou, Fu-Fang
电信工程研究所
关键字: 印刷偶级天线;检波器;电信;电子工程;印刷偶级天线, 检波器;PRINTED DIPOLE ANTENNA;RECTENNA;TELECOMMUNICATION;ELECTRONIC-ENGINEERING;Printed dipole antenna;Rectenna;Printed dipole antenna, Rectenna
公开日期: 1994
摘要: 本篇论文主在以线性偶极天线结合检波器,设计制做量测一Ka-Band的映
像接收器(Video Rectenna)。因为在往更高频的领域发展时,信号源和接
收器具有同样重要的地步。此接收器是将Ka-Band的RF信号能量转换为直
流的信号能量,它主要可应用于卫星的微波发电站及间谍卫星侦查。首先
,全波分析的数值方法被应用来模拟印刷线型偶极天线的特性,以便在可
控制的变数中求取最佳幅射效率。我们将线性耦极天线视为一赫兹偶极(
Hertzian Dipole),由影像定理可求其频域格林函数 (Green's
Function)分布,代入帕格林顿方程式 (Pocklington Equation)后化成积
分运算子方程式,利用动差法(Moment Method)化成矩阵型型式,最后得
到天线上电流分布。由电流分布可算出输入阻抗和介电板的 介电常数和
厚度对幅射效率的影响。利用此设计的Ka-Band偶极天线加上整流器,我
们制做了一类光接收器(Quasi-optical Receiver)。但基于实际可获得最
大功率源的限制,我们采用将电路放入波导管的量测方法,整系统当有18
dBm的RF能量强度落在天线上时,转换效率最佳可达27%。当我们把10mA偏
压电流加于二极体时,接收器的敏感度为82mV/mW,在输入能量-7dBm时。
最后,许多改进此印刷天线的方法及未来研究方向被加以讨论。
The main target of this thesis is to make a Ka-band video
rectenna by printed wire antenna associate with a rectifier.
When we want use to a higher frequency band, the importance of
power source is the same as the receiver. This receiver change
the RF signal energy into DC output power. At first, a full-
wave numerical analysis method is used to simulate the
characteristics of a wire printed dipole antenna, a best
radiation efficiency was obtained under controlled factors. we
treat a wire printed dipole antenna as a Hertzian dipole on the
substrate. The Green's function is obtained by image theory,
then put it into Pocklington's equation, it becomes an integral-
solving problem. Method of moment is used to obtain an integral-
solving solution by a matrix form. Finally, we can get the
current distribution of the antenna, and calculated the input
impedance, and the effect of substrate on the radiation
efficiency. Using this Ka-band dipole antenna with a rectifier,
we design an quasi-optical receiver. Due to the limitation of
the power, we put the rectenna in a waveguide, in order to
measure the rectenna efficiency. The best transfer efficiency
reach 27% when there is 18dBm energy incident on to the printed
dipole. When a 10mA current bias on the diode, the sensitivity
of the detector is 82mV/mW at -7dBm input power level. Finally,
many improve methods and the directions of future study are
given.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT834436003
http://hdl.handle.net/11536/59920
显示于类别:Thesis