Magnetic Field Based Hand Tracking
Sizhen Bian, Kexuan Guo, Mengxi Liu, Bo Zhou, Paul Lukowicz

TL;DR
This paper presents a novel magnetic field-based 3D hand tracking system that uses induced magnetic fields and multilateration, achieving around ten centimeters accuracy in various deployment scenarios, offering an alternative to existing sensing modalities.
Contribution
The work introduces a new magnetic field-based hand tracking system with a custom sensing setup and evaluation methodology, addressing limitations of previous sensor-based approaches.
Findings
Achieves approximately ten centimeters accuracy in hand tracking.
Demonstrates robustness across multiple deployment scenarios.
Validates feasibility of magnetic sensing modality for 3D hand tracking.
Abstract
Sensor-based 3D hand tracking is still challenging despite the massive exploration of different sensing modalities in the past decades. This work describes the design, implementation, and evaluation of a novel induced magnetic field-based 3D hand tracking system, aiming to address the shortcomings of existing approaches and supply an alternative solution. This system is composed of a set of transmitters for the magnetic field generation, a receiver for field strength sensing, and the Zigbee units for synchronization. In more detail, the transmitters generate the oscillating magnetic fields with a registered sequence, the receiver senses the strength of the induced magnetic field by a customized three axes coil, which is configured as the LC oscillator with the same oscillating frequency so that an induced current shows up when the receiver is located in the field of the generated…
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Taxonomy
TopicsIndoor and Outdoor Localization Technologies · Gaze Tracking and Assistive Technology · Wireless Body Area Networks
