A ceramic dielectric resonator antenna excited by a corner-cut square patch for the circularly-polarized operation is introduced. The effect of patch size and cut size is investigated, showing that the resonant freque...A ceramic dielectric resonator antenna excited by a corner-cut square patch for the circularly-polarized operation is introduced. The effect of patch size and cut size is investigated, showing that the resonant frequency of the antenna can be changed by simply changing the patch size. The reflection, axial ratio, and radiation characteristics of the antenna are found. Measurements were carried out to verify the design. The antenna is compact in structure, which is attractive in the application as the satellite communication terminals.展开更多
在高速列车长期、快速行驶中,其转向架金属结构会因疲劳、应力、环境等因素影响,产生金属裂纹。为了在高速列车中的转型架金属表面实现远距离无损检测并判断是否存在裂纹,设计了一种应用在超高频频段的微带贴片型射频识别(Radio Frequen...在高速列车长期、快速行驶中,其转向架金属结构会因疲劳、应力、环境等因素影响,产生金属裂纹。为了在高速列车中的转型架金属表面实现远距离无损检测并判断是否存在裂纹,设计了一种应用在超高频频段的微带贴片型射频识别(Radio Frequency Identification,RFID)抗金属标签,配合RFID芯片,标定RFID阅读器与标签天线的位置和其发射天线的功率,当金属表面存在裂纹时标签天线谐振频率会向低频移动,并产生影响导致RFID系统识别距离的改变,从而实现金属表面裂纹检测。使用高频结构仿真(High Frequency Structure Simulator,HFSS)软件对天线结构进行优化,使其与芯片阻抗匹配,模拟了天线在金属表面存在裂纹的情况。由仿真结果可以分析得出:设计的无线有芯片微带贴片型RFID转向架表面裂纹检测标签能够有效地实现远距离监测金属表面裂纹长度、方向的变化情况。展开更多
基金Project supported by the National High-Technology Research and Development Project of China (Grant No.2007AA12Z125)the Innovation Foundation of Shanghai University (Grant No.SHUCX092130)
文摘A ceramic dielectric resonator antenna excited by a corner-cut square patch for the circularly-polarized operation is introduced. The effect of patch size and cut size is investigated, showing that the resonant frequency of the antenna can be changed by simply changing the patch size. The reflection, axial ratio, and radiation characteristics of the antenna are found. Measurements were carried out to verify the design. The antenna is compact in structure, which is attractive in the application as the satellite communication terminals.
文摘在高速列车长期、快速行驶中,其转向架金属结构会因疲劳、应力、环境等因素影响,产生金属裂纹。为了在高速列车中的转型架金属表面实现远距离无损检测并判断是否存在裂纹,设计了一种应用在超高频频段的微带贴片型射频识别(Radio Frequency Identification,RFID)抗金属标签,配合RFID芯片,标定RFID阅读器与标签天线的位置和其发射天线的功率,当金属表面存在裂纹时标签天线谐振频率会向低频移动,并产生影响导致RFID系统识别距离的改变,从而实现金属表面裂纹检测。使用高频结构仿真(High Frequency Structure Simulator,HFSS)软件对天线结构进行优化,使其与芯片阻抗匹配,模拟了天线在金属表面存在裂纹的情况。由仿真结果可以分析得出:设计的无线有芯片微带贴片型RFID转向架表面裂纹检测标签能够有效地实现远距离监测金属表面裂纹长度、方向的变化情况。