# Towards Touch-to-Access Device Authentication Using Induced Body   Electric Potentials

**Authors:** Zhenyu Yan, Qun Song, Rui Tan, Yang Li, Adams Wai Kin Kong

arXiv: 1902.07057 · 2019-02-20

## TL;DR

This paper introduces TouchAuth, a low-cost, touch-based device authentication method leveraging induced body electric potentials caused by ambient electric fields, offering high accuracy and robustness against interference.

## Contribution

The paper presents a novel touch-to-access authentication approach using iBEPs, demonstrating its effectiveness and robustness compared to existing methods.

## Key findings

- High ROC in touch-to-access policy implementation
- Robustness against appliances' electromagnetic interference
- Low-cost implementation using simple ADC

## Abstract

This paper presents TouchAuth, a new touch-to-access device authentication approach using induced body electric potentials (iBEPs) caused by the indoor ambient electric field that is mainly emitted from the building's electrical cabling. The design of TouchAuth is based on the electrostatics of iBEP generation and a resulting property, i.e., the iBEPs at two close locations on the same human body are similar, whereas those from different human bodies are distinct. Extensive experiments verify the above property and show that TouchAuth achieves high-profile receiver operating characteristics in implementing the touch-to-access policy. Our experiments also show that a range of possible interfering sources including appliances' electromagnetic emanations and noise injections into the power network do not affect the performance of TouchAuth. A key advantage of TouchAuth is that the iBEP sensing requires a simple analog-to-digital converter only, which is widely available on microcontrollers. Compared with existing approaches including intra-body communication and physiological sensing, TouchAuth is a low-cost, lightweight, and convenient approach for authorized users to access the smart objects found in indoor environments.

## Full text

_Full body text omitted from this summary view._ Fetch the complete paper as Markdown: https://tomesphere.com/paper/1902.07057/full.md

## Figures

52 figures with captions in the complete paper: https://tomesphere.com/paper/1902.07057/full.md

## References

55 references — full list in the complete paper: https://tomesphere.com/paper/1902.07057/full.md

---
Source: https://tomesphere.com/paper/1902.07057