首页> 外文会议>Frequency Control Symposium (FCS), 2012 IEEE International >Theoretical and experimental analysis of high Q SAW resonator transient response in a wireless sensor interrogation application
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Theoretical and experimental analysis of high Q SAW resonator transient response in a wireless sensor interrogation application

机译:无线传感器询问中高Q SAW谐振器瞬态响应的理论和实验分析

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Wireless sensing using SAW resonators calls for an accurate modeling and simulation of the charging and discharging of a resonator, connected to a resonant antenna (monopole/dipole) as a source/load. It is well known that a resonator takes about Q/π time periods of the natural resonant frequency to charge/discharge appreciably. The charging and discharging is critically affected by the static capacitance and the antenna impedance. The present work describes the theoretical modeling and experimental validation of the charging and discharging steps of a high Q SAW resonator in a wireless protocol and loading/unloading transients under variable load conditions are estimated. Furthermore, interrogation range using a monostatic RADAR-like reader (+10 dBm emitted power in the 434 MHz ISM band, −60 dBm detection limit) is estimated in air, dielectric media with or without conducting term, consistent with experimental measurements at 3 m in air when using a monopole antenna, 1! 2 m when using directive Yagi-Uda antenna on the interrogation unit (monopole on the sensor side), 40 cm in tap water, negligible distance in sea water.
机译:使用SAW谐振器的无线感测要求对谐振器的充电和放电进行精确的建模和仿真,该谐振器连接到作为源/负载的谐振天线(单极/偶极子)。众所周知,谐振器需要自然谐振频率的大约Q /π时间周期才能进行明显的充电/放电。充电和放电受到静态电容和天线阻抗的严重影响。本工作描述了无线协议中高Q SAW谐振器的充电和放电步骤的理论建模和实验验证,并估算了可变负载条件下的负载/卸载瞬态。此外,在空气,介电介质中,无论有无传导项,都使用类似RADAR的单读取器(在434 MHz ISM频段内发射功率为+10 dBm,检测极限为-60 dBm)来估算询问范围,与3 m处的实验测量结果一致在空中使用单极天线时,1!在询问单元上使用定向八木宇田天线(传感器侧为单极子)时为2 m,在自来水中40 cm,在海水中的距离可忽略不计。

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