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Perfectly Synchronized Streaming from Digitally Modulated Multiple Backscatter Sensor Tags

机译:来自数字调制的多个反向散射传感器标签的完美同步流

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This paper proposes a multiple access method, referred to as Multiple Subcarrier Multiple Access (MSMA), for perfectly synchronized concurrent data collection from a group of passive backscatter wireless sensor tags and its experimental evaluation. By achieving less than 128 micro second synchronization error, backscatter communications can be applied to structural health monitoring of artifacts such as civil structures and machineries. In MSMA, each sensor tag uses a dedicated subcarrier frequency to produce a modulated backscatter. The sensor data is superposed onto the subcarrier either with an analog or a digital modulation. The inevitable harmonics among the subcarriers, stemming from the backscatter principle, can be rejected by numerically calculating the harmonic replicas and subtracting them from the observed signal in a software defined receiver. A frame based signal processing in the receiver results in no relative synchronization error among subcarriers even after the interference rejection. Since the interference rejection can be done before the demodulation and decoding, the concurrency can be secured irrespective to the choice of modulation method. We developed a prototype of MSMA using LabVIEW communications Software Defined Radio environment and prototype sensor tags using discrete electrical parts. The performances and limitation of MSMA using digitally modulated subcarriers are evaluated both in wired and wireless environments with up to four backscatter sensors.
机译:本文提出了一种多址访问方法,称为多子载波多址访问(MSMA),用于从一组无源反向散射无线传感器标签中完美同步并发数据收集并进行实验评估。通过实现小于128微秒的同步错误,可以将反向散射通信应用于人工结构(如土木结构和机械)的结构健康状况监视。在MSMA中,每个传感器标签都使用专用的子载波频率来产生调制后向散射。传感器数据通过模拟或数字调制叠加到副载波上。在软件定义的接收器中,通过数值计算谐波副本并将其从观测信号中减去,可以消除源于反向散射原理的子载波中不可避免的谐波。即使在干扰抑制之后,接收机中基于帧的信号处理也不会导致子载波之间的相对同步误差。由于可以在解调和解码之前完成干扰抑制,因此可以确保并发性,而与调制方法的选择无关。我们使用LabVIEW通信软件定义的无线电环境开发了MSMA的原型,并使用分立的电子零件开发了传感器标签的原型。在具有多达四个反向散射传感器的有线和无线环境中,都可以评估使用数字调制子载波的MSMA的性能和局限性。

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