ViObject

Author:

Chen Wenqiang1ORCID,Lin Shupei2ORCID,Peng Zhencan2ORCID,Parizi Farshid Salemi3ORCID,Heo Seongkook4ORCID,Patel Shwetak3ORCID,Matusik Wojciech5ORCID,Zhao Wei6ORCID,Stankovic John4ORCID

Affiliation:

1. Chinese Academy of Sciences, SIAT; Massachusetts Institute of Technology, USA

2. VibInt AI, China

3. University of Washington, USA

4. University of Virginia, USA

5. Massachusetts Institute of Technology, USA

6. University of SIAT, Shenzhen, China

Abstract

Knowing the object grabbed by a hand can offer essential contextual information for interaction between the human and the physical world. This paper presents a novel system, ViObject, for passive object recognition that uses accelerometer and gyroscope sensor data from commodity smartwatches to identify untagged everyday objects. The system relies on the vibrations caused by grabbing objects and does not require additional hardware or human effort. ViObject's ability to recognize objects passively can have important implications for a wide range of applications, from smart home automation to healthcare and assistive technologies. In this paper, we present the design and implementation of ViObject, to address challenges such as motion interference, different object-touching positions, different grasp speeds/pressure, and model customization to new users and new objects. We evaluate the system's performance using a dataset of 20 objects from 20 participants and show that ViObject achieves an average accuracy of 86.4%. We also customize models for new users and new objects, achieving an average accuracy of 90.1%. Overall, ViObject demonstrates a novel technology concept of passive object recognition using commodity smartwatches and opens up new avenues for research and innovation in this area.

Publisher

Association for Computing Machinery (ACM)

Reference71 articles.

1. [n.d.]. Android TextToSpeech. https://developer.android.com/reference/android/speech/tts/TextToSpeech.

2. An Empirical Evaluation of the System Usability Scale

3. ViObject: A Smartwatch-based Object Recognition System via Vibrations

4. Taprint

5. ViFin: Harness Passive Vibration to Continuous Micro Finger Writing with a Commodity Smartwatch;Chen Wenqiang;Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies,2021

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