On the Error Rate of the LoRa Modulation With Interference

О вероятности ошибки модуляции LoRa при наличии помех
Andreas Burg, Orion Afisiadis, Matthieu Cotting, Alexios Balatsoukas‐Stimming
2019-11-25

LoRa interferenceLoRa modulationadditive white Gaussian noisechirp spread-spectrumsymbol error rate
LoRa is a chirp spread-spectrum modulation developed for the Internet of Things (IoT). In this work, we examine the performance of LoRa in the presence of both additive white Gaussian noise and interference from another LoRa user. To this end, we extend an existing interference model, which assumes perfect alignment of the signal of interest and the interference, to the more realistic case where the interfering user is neither chip- nor phase-aligned with the signal of interest and we derive an expression for the error rate. We show that the existing aligned interference model overestimates the effect of interference on the error rate. Moreover, we prove two symmetries in the interfering signal and we derive low-complexity approximate formulas that can significantly reduce the complexity of computing the symbol and frame error rates compared to the complete expression. Finally, we provide numerical simulations to corroborate the theoretical analysis and to verify the accuracy of our proposed approximations.
1
Derived an expression for LoRa symbol error rate under AWGN plus interference from another LoRa user with arbitrary chip and phase misalignment.
2
Derived low-complexity approximate formulas that significantly reduce complexity of computing symbol and frame error rates compared to the full expression.
3
Proved two symmetries in the interfering LoRa signal that simplify analysis of interference effects.
4
Provided numerical simulations that corroborate the theoretical analysis and validate the accuracy of the proposed approximations.
5
Showed that the prior interference model assuming perfect alignment overestimates interference impact on error rate.

LoRa modulation subject to additive white Gaussian noise and interference from another LoRa user

Symbol and frame error rate of LoRa under realistic (non-chip- and non-phase-aligned) inter-user interference, including exact expression, symmetry properties, and low-complexity approximations

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2019-11-25
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Authors
Andreas Burg
Orion Afisiadis
Matthieu Cotting
Alexios Balatsoukas‐Stimming
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