首页> 外文会议>Microwave Workshop Series on Innovative Wireless Power Transmission: Technologies, Systems, and Applications (IMWS), 2012 IEEE MTT-S International >Wireless resonance connection employing a single resonator between transmitting and receiving electrically small non-resonant antennas
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Wireless resonance connection employing a single resonator between transmitting and receiving electrically small non-resonant antennas

机译:在发射和接收电小的非谐振天线之间采用单个谐振器的无线谐振连接

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Wireless sympathetic connection systems are proposed which employ a single resonator located between two electrically small non-resonant antennas. Symmetric configurations consisting of two equal transmitting and receiving antennas and a resonator are characterized by the equivalent reactive circuits with two inductors and one capacitor in the case of closed path type antennas and with two capacitors and one inductor in the case of open path type antennas. The equivalent circuit constants are identified by the series and parallel resonance frequencies for the even mode excitation and by the low frequency inductance or capacitance for the odd mode excitation. The power transfer efficiency evaluated by the equivalent circuit analysis agrees well with the full wave analysis result, and is 100 percent when the port impedances are matched to the image impedance and the structures are assumed to be lossless. Asymmetric cases of unequal transmitting and receiving antennas are treated, and the theory is applied to the simplified design of HF-RFID systems, where the reader/writer port impedance is 50Ω and the tag port impedance is 3 KΩ. The power transfer efficiency is evaluated in case the antennas and the resonator are made of cupper. It keeps the efficiency larger than −10 dB when the tag antenna moves from the home position by 15 cm horizontally or vertically.
机译:提出了无线同情连接系统,该系统采用位于两个电学小的非谐振天线之间的单个谐振器。由两个相等的发射和接收天线以及一个谐振器组成的对称配置的特征是,在闭合路径型天线的情况下,等效电抗电路具有两个电感器和一个电容器,在开放路径型天线的情况下,具有两个电容器和一个电感器。等效电路常数由偶数模式激励的串联和并联谐振频率以及奇数模式激励的低频电感或电容确定。通过等效电路分析评估的功率传输效率与全波分析结果非常吻合,当端口阻抗与图像阻抗匹配并且假定结构无损耗时,功率转换效率为100%。处理了发射天线和接收天线不相等的不对称情况,并将该理论应用于读写器端口阻抗为50Ω,标签端口阻抗为3KΩ的HF-RFID系统的简化设计中。在天线和谐振器由铜制成的情况下,评估功率传输效率。当标签天线从原始位置水平或垂直移动15 cm时,它可使效率保持在-10 dB以上。

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