Publication | Closed Access
Four-PAM Modulation of Ambient FM Backscattering for Spectrally Efficient Low-Power Applications
46
Citations
24
References
2018
Year
Rf DevicesWireless CommunicationsEngineeringRadio FrequencyRadio CommunicationRadio Frequency CommunicationsElectromagnetic CompatibilityFour-pam ModulationNovel Wireless TagSoftware RadioModulation TechniqueWireless SystemsEnergy-efficient CommunicationSoftware-defined RadioAmbient BackscatterEnergy HarvestingRadio Frequency SignalsAntennaWireless NetworkingAmbient Fm BackscatteringSignal ProcessingUltra-wideband CommunicationBackscatter CommunicationModulation CodingRf Subsystem
Ambient backscatter uses radio frequency signals available in the environment (e.g., radio broadcasting, television, or mobile telephony) to transmit data effectively leading to significant energy and cost efficiency increase. This paper presents a novel wireless tag, which for the first time utilizes 4-pulse amplitude modulation technique to modulate the ambient backscattered FM signals in order to send data to a nearby low-cost software defined radio reader. The tag is based on an RF front-end that uses a single transistor controlled by an ultralow-power microcontroller. The microcontroller includes an analog-to-digital converter for sensing and a digital-to-analog converter for RF front-end control. A proof-of-concept prototype is demonstrated in an indoor environment with the low bit rate of 345 b/s and power consumption 27 μW. It operated using a real FM station at 34.5 km away and the tag-to-reader distance was tested at 1 m. The value of energy spent in this modulator was 78.2 nJ/bit at 345 b/s and 27.7 nJ/bit at 10.2 kb/s.
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