Quantum Transfer Learning for Wi-Fi Sensing

05/17/2022
by   Toshiaki Koike-Akino, et al.
0

Beyond data communications, commercial-off-the-shelf Wi-Fi devices can be used to monitor human activities, track device locomotion, and sense the ambient environment. In particular, spatial beam attributes that are inherently available in the 60-GHz IEEE 802.11ad/ay standards have shown to be effective in terms of overhead and channel measurement granularity for these indoor sensing tasks. In this paper, we investigate transfer learning to mitigate domain shift in human monitoring tasks when Wi-Fi settings and environments change over time. As a proof-of-concept study, we consider quantum neural networks (QNN) as well as classical deep neural networks (DNN) for the future quantum-ready society. The effectiveness of both DNN and QNN is validated by an in-house experiment for human pose recognition, achieving greater than 90 accuracy with a limited data size.

READ FULL TEXT

page 2

page 4

page 5

research
05/17/2022

AutoQML: Automated Quantum Machine Learning for Wi-Fi Integrated Sensing and Communications

Commercial Wi-Fi devices can be used for integrated sensing and communic...
research
12/17/2019

Transfer learning in hybrid classical-quantum neural networks

We extend the concept of transfer learning, widely applied in modern mac...
research
08/31/2022

Classical-to-quantum convolutional neural network transfer learning

Machine learning using quantum convolutional neural networks (QCNNs) has...
research
12/02/2022

Video-based Pose-Estimation Data as Source for Transfer Learning in Human Activity Recognition

Human Activity Recognition (HAR) using on-body devices identifies specif...
research
01/17/2022

Transfer Learning in Quantum Parametric Classifiers: An Information-Theoretic Generalization Analysis

A key step in quantum machine learning with classical inputs is the desi...
research
03/17/2021

Environment and Person Independent Activity Recognition with a Commodity IEEE 802.11ac Access Point

Here, we propose an original approach for human activity recognition (HA...
research
11/22/2019

Neural Turbo Equalization: Deep Learning for Fiber-Optic Nonlinearity Compensation

Recently, data-driven approaches motivated by modern deep learning have ...

Please sign up or login with your details

Forgot password? Click here to reset