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Low cost and precise localization in a remote-powered wireless sensor and identification system

机译:远程供电的无线传感器和识别系统中的低成本和精确定位

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A low cost and precise localization system based on a remote-powered UWB-RFID tag is presented for wireless identification, sensing, positioning and tracking. Our contribution is to utilize the Impulse Radio Ultra wideband (IR-UWB) communication in a RFID system. Such as conventional RFIDs, a tag captures energy from the received RF signal transmitted by a reader which also carries data and clock. However, instead of backscattering, an Impulse-UWB transmitter is used. By a low power design operation distance of 13.9 meters is achieved. A network consist of several readers provide power and retrieve data from the tags in a wide area. Due to the fine time resolution of the ultra-short pulse in IR-UWB, the UWB receiver in the readers are able to accurately approximate the time of arrival of the signal and based on the time-difference-of-arrival algorithm the position of the tag can be estimated precisely. In the line-of-sight scenario by a two-step acquisition system, ±16.8cm accuracy can be achieved. By a new communication protocol proposed based on slotted-ALOHA anti-collision algorithm, 2000 tags per second can be read. The tag circuitry is designed and implemented in CMOS 180nm technology in a single chip solution.
机译:提出了一种基于远程供电的UWB-RFID标签的低成本,精确的定位系统,用于无线识别,感测,定位和跟踪。我们的贡献是在RFID系统中利用脉冲无线电超宽带(IR-UWB)通信。例如常规的RFID,标签从读取器发送的接收到的RF信号中捕获能量,该读取器还携带数据和时钟。但是,不是使用反向散射,而是使用了脉冲超宽带发射机。通过低功耗设计,可实现13.9米的操作距离。一个由多个读取器组成的网络可提供电源,并从广阔区域的标签中检索数据。由于IR-UWB中超短脉冲具有良好的时间分辨率,因此读取器中的UWB接收器能够准确估算信号的到达时间,并根据到达时间差算法确定信号的到达时间。标签可以精确估算。在两步采集系统的视线情况下,可以实现±16.8cm的精度。通过基于时隙ALOHA防冲突算法提出的新通信协议,每秒可以读取2000个标签。标签电路是在单芯片解决方案中以CMOS 180nm技术设计和实现的。

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