DISC: a Dataset for Integrated Sensing and Communication in mmWave Systems

Fuente: arXiv
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Auteurs principaux: Pegoraro, Jacopo, Saucedo, Pablo, Lacruz, Jesus Omar, Rossi, Michele, Widmer, Joerg
Format: Preprint
Publié: 2023
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author Pegoraro, Jacopo
Saucedo, Pablo
Lacruz, Jesus Omar
Rossi, Michele
Widmer, Joerg
author_facet Pegoraro, Jacopo
Saucedo, Pablo
Lacruz, Jesus Omar
Rossi, Michele
Widmer, Joerg
contents This paper presents DISC, a dataset of millimeter-wave channel impulse response measurements for integrated human activity sensing and communication. This is the first dataset collected with a software-defined radio testbed that transmits 60 GHz IEEE 802-11ay-compliant packets and estimates the channel response including scattered signals off the moving body parts of subjects moving in an indoor environment. The provided data consists of three parts, for more than 2 hours of channel measurements with high temporal resolution (0.27 ms inter-packet time). DISC contains the contribution of 7 subjects performing 5 different activities, and includes data collected from two distinct environments. Unlike available radar-based millimeter-wave sensing datasets, our measurements are collected using uniform packet transmission times and sparse traffic patterns from real Wi-Fi deployments. We develop, train, and release open-source baseline algorithms based on DISC to perform human sensing tasks. Our results demonstrate that DISC can serve as a multi-purpose benchmarking tool for machine learning-based human activity recognition, radio frequency gait analysis, and sparse sensing algorithms for next-generation integrated sensing and communications.
format Preprint
id arxiv_https___arxiv_org_abs_2306_09469
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle DISC: a Dataset for Integrated Sensing and Communication in mmWave Systems
Pegoraro, Jacopo
Saucedo, Pablo
Lacruz, Jesus Omar
Rossi, Michele
Widmer, Joerg
Signal Processing
This paper presents DISC, a dataset of millimeter-wave channel impulse response measurements for integrated human activity sensing and communication. This is the first dataset collected with a software-defined radio testbed that transmits 60 GHz IEEE 802-11ay-compliant packets and estimates the channel response including scattered signals off the moving body parts of subjects moving in an indoor environment. The provided data consists of three parts, for more than 2 hours of channel measurements with high temporal resolution (0.27 ms inter-packet time). DISC contains the contribution of 7 subjects performing 5 different activities, and includes data collected from two distinct environments. Unlike available radar-based millimeter-wave sensing datasets, our measurements are collected using uniform packet transmission times and sparse traffic patterns from real Wi-Fi deployments. We develop, train, and release open-source baseline algorithms based on DISC to perform human sensing tasks. Our results demonstrate that DISC can serve as a multi-purpose benchmarking tool for machine learning-based human activity recognition, radio frequency gait analysis, and sparse sensing algorithms for next-generation integrated sensing and communications.
title DISC: a Dataset for Integrated Sensing and Communication in mmWave Systems
topic Signal Processing
url https://arxiv.org/abs/2306.09469