LoRa-based Over-the-Air Computing for Sat-IoT

Fuente: arXiv
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Autores principales: Martinez-Gost, Marc, Pérez-Neira, Ana, Lagunas, Miguel Ángel
Formato: Preprint
Publicado: 2023
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author Martinez-Gost, Marc
Pérez-Neira, Ana
Lagunas, Miguel Ángel
author_facet Martinez-Gost, Marc
Pérez-Neira, Ana
Lagunas, Miguel Ángel
contents Satellite Internet of Things (Sat-IoT) is a novel framework in which satellites integrate sensing, communication and computing capabilities to carry out task-oriented communications. In this paper we propose to use the Long Range (LoRa) modulation for the purpose of estimation in a Sat-IoT scenario. Then we realize that the collisions generated by LoRa can be harnessed in an Over-the-Air Computing (AirComp) framework. Specifically, we propose to use LoRa for Type-based Multiple Access (TBMA), a semantic-aware scheme in which communication resources are assigned to different parameters, not users. Our experimental results show that LoRa-TBMA is suitable as a massive access scheme, provides large gains in terms of mean squared error (MSE) and saves scarce satellite communication resources (i.e., power, latency and bandwidth) with respect to orthogonal multiple access schemes. We also analyze the satellite scenarios that could take advantage of the LoRa-TBMA scheme. In summary, that angular modulations, which are very useful in satellite communications, can also benefit from AirComp.
format Preprint
id arxiv_https___arxiv_org_abs_2306_16333
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle LoRa-based Over-the-Air Computing for Sat-IoT
Martinez-Gost, Marc
Pérez-Neira, Ana
Lagunas, Miguel Ángel
Signal Processing
Satellite Internet of Things (Sat-IoT) is a novel framework in which satellites integrate sensing, communication and computing capabilities to carry out task-oriented communications. In this paper we propose to use the Long Range (LoRa) modulation for the purpose of estimation in a Sat-IoT scenario. Then we realize that the collisions generated by LoRa can be harnessed in an Over-the-Air Computing (AirComp) framework. Specifically, we propose to use LoRa for Type-based Multiple Access (TBMA), a semantic-aware scheme in which communication resources are assigned to different parameters, not users. Our experimental results show that LoRa-TBMA is suitable as a massive access scheme, provides large gains in terms of mean squared error (MSE) and saves scarce satellite communication resources (i.e., power, latency and bandwidth) with respect to orthogonal multiple access schemes. We also analyze the satellite scenarios that could take advantage of the LoRa-TBMA scheme. In summary, that angular modulations, which are very useful in satellite communications, can also benefit from AirComp.
title LoRa-based Over-the-Air Computing for Sat-IoT
topic Signal Processing
url https://arxiv.org/abs/2306.16333