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Turbocharging Ambient Backscatter Communication

机译:涡轮增压环境背向散射通信

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Communication primitives such as coding and multiple antenna processing have provided significant benefits for traditional wireless systems. Existing designs, however, consume significant power and computational resources, and hence cannot be run on low complexity, power constrained backscatter devices. This paper makes two main contributions: (1) we introduce the first multi-antenna cancellation design that operates on backscatter devices while retaining a small form factor and power footprint, (2) we introduce a novel coding mechanism that enables long range communication as well as concurrent transmissions and can be decoded on backscatter devices. We build hardware prototypes of the above designs that can be powered solely using harvested energy from TV and solar sources. The results show that our designs provide benefits for both RFID and ambient backscatter systems: they enable RFID tags to communicate directly with each other at distances of tens of meters and through multiple walls. They also increase the communication rate and range achieved by ambient backscatter systems by 100X and 40X respectively. We believe that this paper represents a substantial leap in the capabilities of backscatter communication.
机译:诸如编码和多天线处理之类的通信原语已为传统无线系统提供了显着优势。然而,现有的设计消耗大量的功率和计算资源,因此不能在低复杂度,功率受限的反向散射设备上运行。本文做出了两个主要贡献:(1)我们介绍了第一个在后向散射设备上运行的多天线抵消设计,同时又保持了较小的外形尺寸和功率占用;(2)我们介绍了一种新颖的编码机制,该机制还可以实现远距离通信作为并发传输,并且可以在反向散射设备上解码。我们构建上述设计的硬件原型,这些原型可以仅使用电视和太阳能收集的能量来供电。结果表明,我们的设计为RFID和环境反向散射系统均带来了好处:它们使RFID标签能够在数十米的距离内并通过多个墙壁直接相互通信。它们还将环境反向散射系统实现的通信速率和范围分别提高了100倍和40倍。我们认为,本文代表了反向散射通信功能的重大飞跃。

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