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On Measuring Doppler Shifts between Tags in a Backscattering Tag-to-Tag Network with Applications in Tracking

机译:测量反向散射的标签到标签网络中标签之间的多普勒频移及其在跟踪中的应用

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In this paper, we present a technique whereby passive tags can track each other in a backscattering tag-to-tag network (BTTN). In such a network, passive tags without any on-board radio transceivers communicate directly with each other by backscattering an external excitation signal. First, we explain how the tags determine their distances to other communicating tags in their proximity and then how they can track nearby tags. Our technique is based on multiphase backscattering, more specifically, on the ability of backscattering tags to systematically change the phase offset of the signal that is being backscattered. A passive receiving tag with an envelope detector can then examine the received signal amplitude over the multiple backscattering phases and can draw inferences about the inter-tag distance. We demonstrate our method and show its accuracy on tags that we have built in our lab. Experiments show that our passive tags can measure Doppler shifts with approximately the same accuracy as that achieved by active conventional RFID readers. Our median tracking error based on data from two tags is only about 2.5 cm.
机译:在本文中,我们提出了一种技术,无源标签可以在反向散射标签到标签网络(BTTN)中互相跟踪。在这样的网络中,没有任何板载无线电收发器的无源标签通过反向散射外部激励信号而彼此直接通信。首先,我们说明标签如何确定其与附近其他通讯标签的距离,然后如何跟踪附近的标签。我们的技术基于多相反向散射,更具体地说,是基于反向散射标签能够系统地更改正被反向散射的信号的相位偏移的能力。然后,带有包络检波器的无源接收标签可以检查多个反向散射相位上的接收信号幅度,并且可以得出有关标签间距离的推论。我们演示了我们的方法,并在我们在实验室中构建的标签上显示了其准确性。实验表明,我们的无源标签可以测量多普勒频移,其精度与有源传统RFID读取器所获得的精度大致相同。基于来自两个标签的数据的中值跟踪误差仅为约2.5厘米。

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