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Inertial Sensor-Based Gait Recognition: A Review.
Sebastijan Sprager1, Matjaz B Juric2
1Faculty of Computer and Information Science, University of Ljubljana, Vecna pot 113, SI-1000 Ljubljana, Slovenia. sebastijan.sprager@fri.uni-lj.si.
Sensors (Basel, Switzerland)
|September 5, 2015
Summary
Inertial sensors in wearable devices enable accurate gait recognition, a unique biometric trait. Advanced methods show promise for security applications in both controlled and real-world scenarios.
Area of Science:
- Biometrics
- Human-Computer Interaction
- Wearable Technology
Background:
- Microelectromechanical systems (MEMS) have enabled low-cost, user-friendly inertial sensors.
- Individual gait patterns can be analyzed as unique biometric identifiers.
- Smart devices with inertial sensors are ubiquitous, driving research in gait recognition.
Purpose of the Study:
- To systematically review the state-of-the-art in inertial sensor-based gait recognition.
- To assess the effectiveness of current approaches in various conditions.
- To highlight the potential of this technology for security applications.
Main Methods:
- Review of current literature on inertial sensor-based gait recognition.
- Analysis of approaches using data from single smart devices.
- Evaluation of performance in controlled and uncontrolled environments.
Main Results:
- Advanced inertial sensor-based gait recognition effectively identifies users in controlled settings.
- Significant progress has been made for realistic use in uncontrolled circumstances.
- Current methods demonstrate high accuracy with data from single devices.
Conclusions:
- Inertial sensor-based gait recognition is a rapidly advancing field with significant potential.
- The technology shows promise for widespread security applications.
- Further development is expected to enhance applicability in diverse, real-world scenarios.
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