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Wisent: Robust downstream communication and storage for computational RFIDs

机译:Wisent:用于计算RFID的强大的下游通信和存储

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Computational RFID (CRFID) devices are emerging platforms that can enable perennial computation and sensing by eliminating the need for batteries. Although much research has been devoted to improving upstream (CRFID to RFID reader) communication rates, the opposite direction has so far been neglected, presumably due to the difficulty of guaranteeing fast and error-free transfer amidst frequent power interruptions of CRFID. With growing interest in the market where CRFIDs are forever-embedded in many structures, it is necessary for this void to be filled. Therefore, we propose Wisent - a robust downstream communication protocol for CRFIDs that operates on top of the legacy UHF RFID communication protocol: EPC C1G2. The novelty of Wisent is its ability to adaptively change the frame length sent by the reader, based on the length throttling mechanism, to minimize the transfer times at varying channel conditions. We present an implementation of Wisent for the WISP 5 and an off-the-shelf RFID reader. Our experiments show that Wisent allows transfer up to 16 times faster than a baseline, non-adaptive shortest frame case, i.e. single word length, at sub-meter distance. As a case study, we show how Wisent enables wireless CRFID reprogramming, demonstrating the world's first wirelessly reprogrammable (software defined) CRFID.
机译:计算RFID(CRFID)设备是新兴平台,可以通过消除电池需求来实现常年计算和传感。尽管已进行了大量研究以提高上行(从CRFID到RFID阅读器)的通信速率,但迄今为止,相反的方向已被忽略,这大概是由于在CRFID频繁断电的情况下难以保证快速且无错误的传输。随着人们对CRFID永久地嵌入许多结构的市场的兴趣日益浓厚,有必要填补这一空白。因此,我们提出了Wisent-一种用于CRFID的强大的下游通信协议,该协议在传统的UHF RFID通信协议EPC C1G2之上运行。 Wisent的新颖之处在于它能够根据长度限制机制自适应地更改读取器发送的帧长度,以最大程度地减少在变化的信道条件下的传输时间。我们为WISP 5和现成的RFID阅读器提供Wisent的实现。我们的实验表明,维森特在亚米距离下的传输速度比基线,非自适应最短帧情况(即单个字长)快16倍。作为案例研究,我们将展示Wisent如何实现无线CRFID重新编程,并演示世界上第一个无线可重新编程(软件定义)的CRFID。

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