ECG Authentication Based on Non-Linear Normalization under Various Physiological Conditions

  • Hwang, Ho Bin
  • Kwon, Hyeokchan
  • Chung, Byungho
  • Lee, Jongshill
  • Kim, In Young
Citations

WEB OF SCIENCE

14
Citations

SCOPUS

26

초록

The development and use of wearable devices require high levels of security and have sparked interest in biometric authentication research. Among the available approaches, electrocardiogram (ECG) technology is attracting attention because of its strengths in spoofing. However, morphological changes of ECG, which are affected by physical and psychological factors, can make authentication difficult. In this paper, we propose authentication using non-linear normalization of ECG beats that is robust to changes in ECG waveforms according to heart rate fluctuations in various daily activities. We performed a non-linear normalization method through the analysis of ECG alongside heart rate, evaluating similarities and authenticating the performance of our new method compared to existing methods. Compared with beats before normalization, the average similarity of the proposed method increased 23.7% in the resting state and 43% in the non-resting state. After learning in the resting state, authentication performance reached 99.05% accuracy for the resting state and 88.14% for the non-resting state. The proposed method can be applicable to an ECG-based authentication system under various physiological conditions.

키워드

biometricsauthenticationvarious physiological conditionsECGnon-linearnormalizationBIOMETRIC AUTHENTICATIONWAVEEXERCISEMOBILE
제목
ECG Authentication Based on Non-Linear Normalization under Various Physiological Conditions
저자
Hwang, Ho BinKwon, HyeokchanChung, ByunghoLee, JongshillKim, In Young
DOI
10.3390/s21216966
발행일
2021-11
유형
Article
저널명
Sensors
21
21
페이지
1 ~ 19

파일 다운로드