Hofmann, Christian A.; Storek, Kai-Uwe; Knopp, Andreas
Dokumenttyp:
Konferenzbeitrag / Conference Paper
Titel:
Impact of Phase Noise and Oscillator Stability on Ultra-Narrow-Band-IoT Waveforms for Satellite
Titel Konferenzpublikation:
ICC 2021 - IEEE International Conference on Communications
Veranstalter (Körperschaft):
IEEE
Konferenztitel:
IEEE International Conference on Communications (ICC) (2021, Online)
Tagungsort:
Online
Jahr der Konferenz:
2021
Datum Beginn der Konferenz:
14.06.2021
Datum Ende der Konferenz:
23.06.2021
Verlagsort:
Piscataway, NJ
Verlag:
IEEE
Jahr:
2021
Sprache:
Englisch
Schlagwörter:
Satellite Communications
Abstract:
It has been shown that ultra-narrow-band (uNB) massive machine type communication using very compact devices with direct access to satellites is possible at ultra low rate. This enables global ubiquitous coverage for terminals without terrestrial service in the Internet of Remote Things and provides access to any satellite up to the the geostationary earth orbit. The lower data rate for waveforms providing uNB communication is set by the stability and the phase noise of the applied oscillators. In this paper we analyze the physical layer of two candidate waveforms, which are LoRa and Unipolar Coded Chirp-Spread Spectrum (UCSS) with respect to phase noise and oscillator frequency drifts. It is figured out that UCSS is more robust against linear frequency drifts, which is the main source of error for uNB transmissions. «
It has been shown that ultra-narrow-band (uNB) massive machine type communication using very compact devices with direct access to satellites is possible at ultra low rate. This enables global ubiquitous coverage for terminals without terrestrial service in the Internet of Remote Things and provides access to any satellite up to the the geostationary earth orbit. The lower data rate for waveforms providing uNB communication is set by the stability and the phase noise of the applied oscillators.... »