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薄膜声体波谐振器的电磁场建模与仿真 被引量:5
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作者 董树荣 金浩 王德苗 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2006年第9期1477-1481,共5页
为了模拟薄膜声体波谐振器(FBAR)的电磁场(EM)分布特性,提出了一种新的FBAR建模方法.该方法从基本的一维弹性压电方程和三维麦克斯韦尔方程出发,结合电极与压电薄膜交界处机械应力与机械位移连续的边界条件,推导出了FBAR等效复介电常数... 为了模拟薄膜声体波谐振器(FBAR)的电磁场(EM)分布特性,提出了一种新的FBAR建模方法.该方法从基本的一维弹性压电方程和三维麦克斯韦尔方程出发,结合电极与压电薄膜交界处机械应力与机械位移连续的边界条件,推导出了FBAR等效复介电常数的严格解.将电磁场和声场等效到一个复介电常数中,用等效复介电常数的形式来包含电声效应.并基于有限元方法对FBAR全波段进行了仿真.结果表明,该方法的仿真结果与实测数据基本一致,具有很好的准确性.与传统的电路模型比较,由该方法得到的模型能够实现场的不连续仿真和FBAR的电磁场分布与压电效应的实时仿真. 展开更多
关键词 声体波 射频谐振器 电磁场建模 介电常数
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A Modified Split⁃Ring Resonator Antenna for Radio Frequency Identification Tag 被引量:1
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作者 CHEN Weikang NIU Zhenyi +2 位作者 LI Mengyuan XU Qian GU Changqing 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第3期512-519,共8页
A compact antenna formed by three concentric split rings for ultra-high frequency(UHF)radio frequency identification(RFID)tag is proposed in this paper.The antenna is composed of two parts,an outer short-circuited rin... A compact antenna formed by three concentric split rings for ultra-high frequency(UHF)radio frequency identification(RFID)tag is proposed in this paper.The antenna is composed of two parts,an outer short-circuited ring modified from a traditional split-ring resonator(SRR)antenna and an inner SRR load,so the antenna can be regarded as a short-circuited ring loaded with SRR.According to the transmission line theory,to conjugate match with the capacitive input-impedance of a tag chip,the length of the short-circuited ring isλg/4 shorter than that of an open-circuited dipole of a traditional SRR antenna,whereλg is the wavelengh of the operating frequency.Hence,the size of the proposed antenna is more compact than that of the traditional SRR antenna.Thereafter,the proposed antenna is simulated and optimized by ANSYS high-frequency structure simulator(HFSS).The impedance,efficiency,and mutual coupling of the fabricated antenna are tested in a reverberation chamber(RC).The results show that the size of the presented antenna is 83%smaller than that of the traditional SRR antenna and the proposed antenna can cover the whole UHF RFID operating frequency band worldwide(840—960 MHz).The measured read range of the tag exhibits maximum values of 45 cm in free space and 37 cm under dense tag environment. 展开更多
关键词 radio frequency identification(RFID) compact antenna split-ring resonator(SRR) reverberation chamber(RC) dense tag environment
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