Перейти к основной навигации Перейти к поиску Перейти к основному содержанию

Activity Recognition and Anomaly Detection in E-Health Applications Using Color-Coded Representation and Lightweight CNN Architectures

  • Middle East Technical University

Результат исследованийрецензирование

Аннотация

E-Health is becoming a vital industry and human activity recognition (HAR) is one of the most popular research areas of its scope. Although there are various studies on HAR, most of them come up with complex models that are not compatible with portable and wearable devices due to their limited computing capabilities. In this study, a new approach to data representation is presented with convolutional neural network architectures for high accuracy and lightweight activity detection. An anomaly detection framework is presented, which uses ECG data for the prediction of cardiac stress activities. The novel approach to data representation and the proposed deep learning model are tested on the MHEALTH dataset with two different validation techniques for accuracy and three different complexity metrics. The experimental results show that the proposed approaches can achieve up to 96.92% and 97.06% accuracy for the HAR and cardiac stress level, respectively. In addition, the models proposed for inertial data and ECG-based prediction are lighter than the existing approaches in the literature with sizes of 0.89 MB and 1.97 MB and complexities of 0.06 and 1.04 Giga FLOPS, respectively.

Язык оригиналаEnglish
Номер статьи9360822
Страницы (с-по)14191-14202
Число страниц12
ЖурналIEEE Sensors Journal
Том21
Номер выпуска13
DOI
СостояниеAccepted/In press - 2021

ЦУР ООН

Работа этого автора способствует достижению следующих Целей устойчивого развития

  1. Good health and well being
    Good health and well being

ASJC Scopus subject areas

  • Instrumentation
  • Electrical and Electronic Engineering

Fingerprint

Подробные сведения о темах исследования «Activity Recognition and Anomaly Detection in E-Health Applications Using Color-Coded Representation and Lightweight CNN Architectures». Вместе они формируют уникальный семантический отпечаток (fingerprint).

Цитировать