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Phase Cancellation in Backscatter-Based Tag-to-Tag Communication Systems

机译:基于反向散射的标签到标签通信系统中的相位抵消

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In this paper, we investigate a unique phase cancellation problem that occurs in backscatter-based tag-to-tag (BBTT) communication systems. These are systems wherein two or more radio-less devices (tags) communicate with each other purely by reflecting (backscattering) an external signal (whether ambient or intentionally generated). A transmitting tag modulates baseband information onto the reflected signal using backscatter modulation. At the receiving tag, the backscattered signal is superimposed to the external excitation and the resulting signal is demodulated using envelope detection techniques. The relative phase difference between the backscatter signal and the external excitation signal at the receiving tag has a large impact on the envelope of the resulting signal. This often causes a complete cancellation of the baseband information contained in the envelope, and it results in a loss of communication between the two tags. This problem is ubiquitous in all BBTT systems and greatly impacts the reliability, robustness, and communication range of such systems. We theoretically analyze and experimentally demonstrate this problem for devices that use both ASK and PSK backscattering. We then present a solution to the problem based on the design of a new backscatter modulator for tags that enables multiphase backscattering. We also propose a new combination method that can further enhance the detection performance of BBTT systems. We examine the performance of the proposed techniques through theoretical analysis, computer simulations, and laboratory experiments with a prototype tag that we have developed.
机译:在本文中,我们研究了一个独特的相位抵消问题,该问题发生在基于反向散射的标签到标签(BBTT)通信系统中。在这些系统中,两个或多个无无线电设备(标签)通过反射(反向散射)外部信号(无论是环境信号还是有意产生的信号)而纯粹相互通信。发送标签使用反向散射调制将基带信息调制到反射信号上。在接收标签处,反向散射信号被叠加到外部激励信号上,并且使用包络检测技术对所得信号进行解调。接收标签处的反向散射信号与外部激励信号之间的相对相位差对所得信号的包络有很大影响。这通常导致包络中包含的基带信息的完全消除,并且导致两个标签之间的通信丢失。这个问题在所有BBTT系统中无处不在,并且极大地影响了此类系统的可靠性,健壮性和通信范围。我们从理论上分析和实验证明了同时使用ASK和PSK反向散射的设备的这一问题。然后,我们基于新的用于标签的反向散射调制器的设计提出了解决该问题的方法,该调制器支持多相反向散射。我们还提出了一种新的组合方法,可以进一步提高BBTT系统的检测性能。我们通过理论分析,计算机模拟和带有我们开发的原型标签的实验室实验来检验所提出技术的性能。

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