English

Smart Ankleband for Plug-and-Play Hand-Prosthetic Control

Robotics 2025-07-15 v2

Abstract

Building robotic prostheses requires a sensor-based interface designed to provide the robotic hand with the control required to perform hand gestures. Traditional Electromyography (EMG) based prosthetics and emerging alternatives often face limitations such as muscle-activation limitations, high cost, and complex calibrations. In this paper, we present a low-cost robotic system composed of a smart ankleband for intuitive, calibration-free control of a robotic hand, and a robotic prosthetic hand that executes actions corresponding to leg gestures. The ankleband integrates an Inertial Measurement Unit (IMU) sensor with a lightweight neural network to infer user-intended leg gestures from motion data. Our system represents a significant step towards higher adoption rates of robotic prostheses among arm amputees, as it enables one to operate a prosthetic hand using a low-cost, low-power, and calibration-free solution. To evaluate our work, we collected data from 10 subjects and tested our prototype ankleband with a robotic hand on an individual with an upper-limb amputation. Our results demonstrate that this system empowers users to perform daily tasks more efficiently, requiring few compensatory movements.

Keywords

Cite

@article{arxiv.2503.17846,
  title  = {Smart Ankleband for Plug-and-Play Hand-Prosthetic Control},
  author = {Dean Zadok and Oren Salzman and Alon Wolf and Alex M. Bronstein},
  journal= {arXiv preprint arXiv:2503.17846},
  year   = {2025}
}
R2 v1 2026-06-28T22:31:00.509Z