DOE OSTI · 1986794
Carrier and sampling frequency offset estimation for RF communication with crystal-less nodes
Abstract
When the ultra-low power mm-scale sensor node does not have a crystal oscillator and phase-lock loop, it inevitably exhibits significant carrier frequency offset (CFO) and sampling frequency offset (SFO) with respect to the reference frequencies in the gateway. This disclosure enables efficient real-time calculation of accurate SFO and CFO at the gateway, thus the ultra-low power mm-scale sensor node can be realized without a costly and bulky clock reference crystal and also power-hungry phase lock loop. In the proposed system, the crystal-less sensor starts transmission with repetitive RF pulses with a constant interval, followed by the data payload using pulse-position modulation (PPM). A proposed algorithm uses a two-dimensional (2D) fast Fourier transform (FFT) based process that identifies the SFO and CFO at the same time to establish successful wireless communication between the gateway and crystal-less sensor nodes.
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Kim, Hun-Seok, Hsu, Chin-Wei, Blaauw, David T., Kempke, Benjamin. 2022-11-08. Carrier and sampling frequency offset estimation for RF communication with crystal-less nodes. https://www.osti.gov/biblio/1986794
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