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Wavelet Distance Measure for Person Identification Using Electrocardiograms

IEEE Transactions on Instrumentation and Measurement · 2008 · Vol. 57(2) · pp. 248–253
Adrian D. C. ChanMohyeldin M. HamdyArmin BadreVesal Badee

Abstract

In this paper, the authors present an evaluation of a new biometric based on electrocardiogram (ECG) waveforms. ECG data were collected from 50 subjects during three data-recording sessions on different days using a simple user interface, where subjects held two electrodes on the pads of their thumbs using their thumb and index fingers. Data from session 1 were used to establish an enrolled database, and data from the remaining two sessions were used as test cases. Classification was performed using three different quantitative measures: percent residual difference, correlation coefficient, and a novel distance measure based on wavelet transform. The wavelet distance measure has a classification accuracy of 89%, outperforming the other methods by nearly 10%. This ECG person-identification modality would be a useful supplement for conventional biometrics, such as fingerprint and palm recognition systems.

ECG Monitoring and AnalysisEEG and Brain-Computer InterfacesWireless Body Area NetworksBiometricsArtificial intelligencePattern recognition (psychology)Computer scienceWavelet transformModality (human–computer interaction)Measure (data warehouse)Identification (biology)Fingerprint (computing)Wavelet
Citations
360
FWCI
8.96
field-weighted impact
References
15
Percentile
98%
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References
ECG analysis: a new approach in human identification
IEEE Transactions on Instrumentation and Measurement · 2001 · 943 citations
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