Analysis of local binary pattern using uniform bins as palm vein pattern descriptor

Author:

Atikah Mohd Hayat Nurul,Mohd Noh Zarina,Mohamad Yatim Norhidayah,Ahmad Radzi Syafeeza

Abstract

Abstract Palm vein authentication technology which reads the features of palm vein has been widely used in recent years as it offers high accuracy identification and difficult to be forged or impersonated. This paper demonstrates a palm vein recognition system using uniform Local Binary Pattern (LBP) through the Python language and R. Python language was used for contrast enhancement, noise reduction and LBP implementation while R was used for classifying palm vein pattern using K-Nearest Neighbour (KNN) classifier. The palm samples come from two datasets which are from the Chinese Academy of Sciences Institute of Automation (CASIA) and self-dataset. The outcomes were the extracted and classified palm vein pattern based on subjects and their accuracy based on each dataset. The accuracy for all uniform LBP bins and selected uniform LBP bins from self-dataset were 87% and 53% respectively; while for CASIA dataset were 60% and 27% respectively. The results show that the accuracy is higher if all uniform LBP bins are used for the recognition purpose.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference16 articles.

1. A review: personal identification based on palm vein infrared pattern;Soh;Journal of Telecommunication, Electronic and Computer Engineering (JTEC),2018

2. An open source contact-free palm vein recognition system;Kumar;International Journal of Advances in Applied Sciences,2017

3. Local binary features for texture classification: taxonomy and experimental study;Liu;Pattern Recognition,2017

4. Palm vein recognition with local texture patterns;Mirmohamadsadeghi;IET Biometrics,2014

5. Support vector machine-based fault diagnosis of power transformer using K nearest-neighbor imputed DGA dataset;Sahri;Journal of Computer and Communications,2014

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