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Near-field radio frequency identification (RFID) tags have a number of unique features such as being wirelessly powered, having ultra low power communication capabilities, small size, and low cost. These qualities paired with the increasing availability of commodity near field communication (NFC) enabled smart phones presents a significant opportunity to enable a wide range of new applications and...
A dual-band dual-mode filter with second order response in each band is presented for application in near-adjacent channel communications systems. Utilizing large perturbations in a meander resonant structure the resonant frequencies of orthogonal field modes are split allowing for a linear coupling arrangement. The filter's passbands are centered at 2.35 GHz and 2.57 GHz with fractional bandwidths...
Harvesting ambient RF power is attractive as a means to operate microelectronics without wires, batteries, or even a dedicated RFID reader. However, most previous ambient RF harvesters have been narrowband, making mobile sensing scenarios infeasible: an RF harvester tuned to work in one city will not generally work in another, as the spectral environments tend to differ. This paper presents a novel...
The ability to accurately localize passive UHF RFID tags in uncontrolled and unstructured environments is limited by multipath propagation. Therefore, in order to increase the spatial resolution of RF based localization methods we propose to combine them with additional sensing capabilities. In this work we enhance passive UHF RFID tags with LEDs, using the Wireless Identification and Sensing Platform...
The concept of Free Space Optical (FSO) communications has been around since the late 1960's.This paper will describe some recent experimental results that demonstrate and validate hybrid FSO/RF communication links as viable components in a tactical high data rate network. In particular, we will describe air-mountain link closure up to ranges of 200 km under heavy atmospheric turbulence. These links...
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