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

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

Commercial Wi-Fi devices can be used for integrated sensing and communications (ISAC) to jointly exchange data and monitor indoor environment. In this paper, we investigate a proof-of-concept approach using automated quantum machine learning (AutoQML) framework called AutoAnsatz to recognize human gesture. We address how to efficiently design quantum circuits to configure quantum neural networks (QNN). The effectiveness of AutoQML is validated by an in-house experiment for human pose recognition, achieving state-of-the-art performance greater than 80 with a significantly small number of trainable parameters.

READ FULL TEXT

page 1

page 4

research
05/17/2022

Quantum Transfer Learning for Wi-Fi Sensing

Beyond data communications, commercial-off-the-shelf Wi-Fi devices can b...
research
07/13/2023

Quantum Autoencoders for Learning Quantum Channel Codes

This work investigates the application of quantum machine learning techn...
research
08/04/2020

A divide-and-conquer algorithm for quantum state preparation

Advantages in several fields of research and industry are expected with ...
research
03/29/2023

Quantum Deep Hedging

Quantum machine learning has the potential for a transformative impact a...
research
04/17/2020

Space-Time Domain Tensor Neural Networks: An Application on Human Pose Recognition

Recent advances in sensing technologies require the design and developme...
research
11/02/2022

eXplainable AI for Quantum Machine Learning

Parametrized Quantum Circuits (PQCs) enable a novel method for machine l...
research
10/03/2011

Strange Beta: An Assistance System for Indoor Rock Climbing Route Setting Using Chaotic Variations and Machine Learning

This paper applies machine learning and the mathematics of chaos to the ...

Please sign up or login with your details

Forgot password? Click here to reset