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UHF RFID Systems; Their Susceptibility to Backscattered Signals Induced by Electronic Ballast Driven Fluorescent Lamps

机译:UHF RFID系统;它们对电子镇流器驱动荧光灯引起的反向散射信号的敏感性

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It was demonstrated that high speed switching of electronic ballast driven fluorescent lamp (EBFL) reflects and modulates the incident UHF RFID forward link reader- tag signal in a manner similar to that of modulated reverse link backscattered tag-reader signal. Qualitative analysis of EBFL's backscattered radiation properties indicated it has a half dipole pattern similar to that of the UHF RFID tag. Its backscatter signal spectrum falls within the spectral band of the tag signal with power levels exceeding that of a tag-reader signal power when located at distances over 5 meters from the reader antenna. Performance analyses results of an operating UHF RFID system, in close proximity to a set of active EBFLs, indicated without any doubt that the EBFL's modulated backscattered signal is a source of strong interference. It can compromise the reverse link and significantly affect the reception of modulated backscattered UHF RFID tag signals. The effects of this interference must be taken into consideration when developing an RFID system operating in an environment abundant with EBFLs.
机译:事实证明,电子镇流器驱动的荧光灯(EBFL)的高速开关以类似于调制反向链路反向散射标签阅读器信号的方式反射和调制入射的UHF RFID前向链接阅读器标签信号。对EBFL的反向散射辐射特性进行定性分析表明,它具有类似于UHF RFID标签的半偶极子模式。其背向散射信号频谱位于距离读取器天线5米以上的位置时,其功率水平超过了标签读取器信号功率的功率水平,从而落入了标签信号的频谱范围内。对运行中的UHF RFID系统进行的性能分析结果非常接近一组有源EBFL,这毫无疑问表明EBFL的调制后向散射信号是强烈干扰的源头。它会损害反向链路,并严重影响调制后向散射UHF RFID标签信号的接收。在开发在EBFL丰富的环境中运行的RFID系统时,必须考虑这种干扰的影响。

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